Sample records for junction office page

  1. DOE/Grand Junction Office Bluewater LTSP July 1997 Doc. No. S00012AA, Page iii

    Office of Legacy Management (LM)

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  2. EA-0930: Facility Operations at the U.S. DOE Grand Junction Projects Office, Grand Junction, Colorado

    Broader source: Energy.gov [DOE]

    This EA evaluates the environmental impacts of the proposal to expand and upgrade the U.S. Department of Energy's Grand Junction Projects Office facilities and operations in Grand Junction, Colorado.

  3. Environmental Audit of the Grand Junction Projects Office

    SciTech Connect (OSTI)

    Not Available

    1991-08-01T23:59:59.000Z

    The Grand Junction Projects Office (GJPO) is located in Mesa County, Colorado, immediately south and west of the Grand Junction city limits. The US Atomic Energy Commission (AEC) established the Colorado Raw Materials Office at the present-day Grand Junction Projects Office in 1947, to aid in the development of a viable domestic uranium industry. Activities at the site included sampling uranium concentrate; pilot-plant milling research, including testing and processing of uranium ores; and operation of a uranium mill pilot plant from 1954 to 1958. The last shipment of uranium concentrate was sent from GJPO in January, 1975. Since that time the site has been utilized to support various DOE programs, such as the former National Uranium Resource Evaluation (NURE) Program, the Uranium Mill Tailings Remedial Action Project (UMTRAP), the Surplus Facilities Management Program (SFMP), and the Technical Measurements Center (TMC). All known contamination at GJPO is believed to be the result of the past uranium milling, analyses, and storage activities. Hazards associated with the wastes impounded at GJPO include surface and ground-water contamination and potential radon and gamma-radiation exposure. This report documents the results of the Baseline Environmental Audit conducted at Grand Junction Projects Office (GJPO) located in Grand Junction, Colorado. The Grand Junction Baseline Environmental Audit was conducted from May 28 to June 12, 1991, by the Office of Environmental Audit (EH-24). This Audit evaluated environmental programs and activities at GJPO, as well as GJPO activities at the State-Owned Temporary Repository. 4 figs., 12 tabs.

  4. DOE Grand Junction Projects Office Edgemont LTSP

    Office of Legacy Management (LM)

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  5. United States Department of Energy, Grand Junction Office

    SciTech Connect (OSTI)

    Not Available

    1980-01-01T23:59:59.000Z

    The Grand Junction Office (GJO), US Department of Energy (DOE), develops and administers programs for evaluating domestic uranium resources and the production capability of industry; for developing resource planning information for DOE; and for advancing geologic and geophysical exploration concepts and techniques. In addition, GJO administers the leasing of mineral lands under DOE control, and carries out activities relating to the environmental aspects of uranium mining and milling, including remedial programs. The Office is staffed by administrative and technical program-management personnel. Bendix Field Engineering Corporation (Bendix) is the DOE operating contractor at the Grand Junction, Colorado, Government-owned/contractor-operated (GOCO) facility. The technical staffs of both GJO and Bendix are primarily geoscience-oriented. Specifically during 1980, uranium resource assessment on 135 National Topographic Map Series (NTMS) quadrangles was completed, along with other specific studies, to yield October 1980 national resource estimates. In addition, updated uranium supply analysis and production capability projections were completed. Another key aspect of this successful program was the development of improved geophysical and geochemical equipment and techniques in support of uranium resource assessment. Much of the hardware and know-how developed was turned over to the public and to the uranium industry at large for application to uranium exploration and the assessment of uranium company resources. The Grand Junction Office also participated actively during 1980 in international cooperative research on uranium exploration techniques and on the geology of uranium deposits.

  6. DOE - Office of Legacy Management -- Grand Junction Sites

    Office of Legacy Management (LM)

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  7. EA-1338: Transfer of the Department of Energy Grand Junction Office to Non-DOE Ownership, Grand Junction, Colorado

    Broader source: Energy.gov [DOE]

    This EA evaluates the environmental impacts for the proposed transfer of real and personal property at the U.S. Department of Energy's Grand Junction Office to non-DOE ownership.

  8. Lessons Learned: The Grand Junction Office Site Transfer to Private

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |EnergyonSupport0.pdf5 OPAM SEMIANNUAL REPORT TOJaredKansas1 - Energy Basics LessonOwnership |

  9. National Uranium Resource Evaluation. Bibliographic index of Grand Junction office uranium reports

    SciTech Connect (OSTI)

    Johnson, J.B.

    1981-05-01T23:59:59.000Z

    In October 1978, Mesa College entered into subcontract with Bendix Field Engineering Corporation (BFEC) to prepare a bibliographic index of the uranium raw materials reports issued by the Grand Junction Office of the US Department of Energy (DOE). Bendix, prime contractor to the Grand Junction Office, operates the Technical Library at the DOE facility. Since the early 1950s, approximately 2700 reports have been issued by the Grand Junction Office. These reports were the results of uranium investigations conducted by federal agencies and their subcontractors. The majority of the reports cover geology, mineralogy, and metallurgy of uranium and/or thorium. No single, complete list of these reports existed. The purpose of this subcontract was to compile a comprehensive index to these reports. The Mesa College geology faculty worked with the BFEC and DOE staffs to develop the format for the index. Undergraduate geology students from Mesa compiled a master record sheet for each report. All reports issued up to January 1, 1979 were included in the bibliography. The bibliography is in preliminary, unedited form. It is being open-filed at this time, on microfiche, to make the information available to the public on a timely basis. The bibliography is divided into a master record list arranged in alpha-numeric order by report identification number, with separate indices arranged by title, author, state and county, 1/sup 0/ x 2/sup 0/ NTMS quadrangle, key words, and exploration area.

  10. Small Business Programs Office Home Page - Redirect

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

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  11. Commercialization Home Page - EERE Commercialization Office

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

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  12. Final report of the radiological release survey of Building 11 at the Grand Junction Office Facility

    SciTech Connect (OSTI)

    Johnson, R.K.; Corle, S.G.

    1997-09-01T23:59:59.000Z

    The U.S. Department of Energy (DOE) Grand Junction Office (GJO) occupies a 61.7-acre facility along the Gunnison River near Grand Junction, Colorado. This site was contaminated with uranium ore concentrates and mill tailings during vanadium refining activities of the Manhattan Engineer District, and during sampling, assaying, pilot milling, storage, and brokerage activities conducted for the U.S. Atomic Energy Commission`s domestic uranium procurement program. The DOE Defense Decontamination and Decommissioning Program established the GJO Remedial Action Project (GJORAP) to clean up and restore the facility lands, improvements, and underlying aquifer. WASTREN-Grand Junction is the site contractor for the facility and the remedial action contractor for GJORAP. Building 11 and the underlying soil were found not to be radiologically contaminated; therefore, the building can be released for unrestricted use. Placards have been placed at the building entrances indicating the completion of the radiological release survey and prohibiting the introduction of any radioactive materials within the building without written approvals from the GJO Facilities Operations Manager. This document was prepared in response to a DOE-GJO request for an individual final release report for each GJO building.

  13. Final report of the radiological release survey of Building 19 at the Grand Junction Office Facility

    SciTech Connect (OSTI)

    Johnson, R.K.; Corle, S.G.

    1997-09-01T23:59:59.000Z

    The U.S. Department of Energy (DOE) Grand Junction Office (GJO) occupies a 61.7-acre facility along the Gunnison River near Grand Junction, Colorado. This site was contaminated with uranium ore concentrates and mill tailings during vanadium refining activities of the Manhattan Engineer District, and during sampling, assaying, pilot milling, storage, and brokerage activities conducted for the U.S. Atomic Energy Commission`s domestic uranium procurement program. The DOE Defense Decontamination and Decommissioning Program established the GJO Remedial Action Project (GJORAP) to clean up and restore the facility lands, improvements, and underlying aquifer. WASTREN-Grand Junction is the site contractor for the facility and the remedial action contractor for GJORAP. Building 19 and the underlying soil were found not to be radiologically contaminated; therefore, the building can be released for unrestricted use. Placards have been placed at the building entrances indicating the completion of the radiological release survey and prohibiting the introduction of any radioactive materials within the building without written approvals from the GJO Facilities Operations Manager. This document was prepared in response to a DOE-GJO request for an individual final release report for each GJO building.

  14. Final report of the radiological release survey of Building 54 at the Grand Junction Office Facility

    SciTech Connect (OSTI)

    Johnson, R.K.; Corle, S.G.

    1997-09-01T23:59:59.000Z

    The U.S. Department of Energy (DOE) Grand Junction Office (GJO) occupies a 61.7-acre facility along the Gunnison River near Grand Junction, Colorado. This site was contaminated with uranium ore concentrates and mill tailings during vanadium refining activities of the Manhattan Engineer District, and during sampling, assaying, pilot milling, storage, and brokerage activities conducted for the U.S. Atomic Energy Commission`s domestic uranium procurement program. The DOE Defense Decontamination and Decommissioning Program established the GJO Remedial Action Project (GJORAP) to clean up and restore the facility lands, improvements, and underlying aquifer. WASTREN-Grand Junction is the site contractor for the facility and the remedial action contractor for GJORAP. Building 54 and the underlying soil were found not to be radiologically contaminated, and can be released for unrestricted use. Placards have been placed at the building entrances indicating the completion of the radiological release survey and prohibiting the introduction of any radioactive materials within the building without written approvals from the GJO Facilities Operations Manager. This document was prepared in response to a DOE-GJO request for an individual release report for each GJO building.

  15. Final report of the radiological release survey of Building 29 at the Grand Junction Office Facility

    SciTech Connect (OSTI)

    Johnson, R.K.; Corle, S.G.

    1997-09-01T23:59:59.000Z

    The U.S. Department of Energy (DOE) Grand Junction Office (GJO) occupies a 61.7-acre facility along the Gunnison River near Grand Junction, Colorado. This site was contaminated with uranium ore concentrates and mill tailing during vanadium refining activities of the Manhattan Engineer District, and during sampling, assaying, pilot milling, storage, and brokerage activities conducted for the U.S. Atomic Energy Commission`s domestic uranium procurement program. The DOE Defense Decontamination and Decommissioning Program established the GJO Remedial Action Project (GJORAP) to clean up and restore the facility lands, improvements, and underlying aquifer. WASTREN-Grand Junction is the site contractor for the facility and the remedial action contractor for GJORAP. Building 29 and the underlying soil were found not to be radiologically contaminated; therefore, the building can be released for unrestricted use. Placards have been placed at the building entrances indicating the completion of the radiological release survey and prohibiting the introduction of any radioactive materials within the building without written approvals from the GJO Facilities Operations Manager. This document was prepared in response to a DOE-GJO request for an individual final release report for each GJO building.

  16. Grand Junction Projects Office site environmental report for calendar year 1992

    SciTech Connect (OSTI)

    Not Available

    1993-05-01T23:59:59.000Z

    This report presents information pertaining to environmental activities conducted during calendar year 1992 at the US Department of Energy Grand Junction Projects Office (DOE-GJPO) facility in Colorado. Environmental activities conducted at the GJPO facility during 1992 included those associated with environmental compliance, site remediation, off-site dose modeling, and radiological and nonradiological monitoring. Four phases of the on-site Grand Junction Projects Office Remedial Action Project were completed in 1992. Remediation activities, which included the removal of 161,589 tons of uranium-mill-tailings-contaminated material from the facility, were conducted in compliance with all applicable permits. Off-site dose modeling for the GJPO was conducted to determine compliance with current National Emission Standards for Hazardous Air Pollutants, Subpart H, and applicable DOE Orders (5400.1 and 5400.5). The total off-site EDE to the public from all sources of radiation emanating from the facility (radon, air particulates, gamma) was calculated as 9 mrem/yr, which is well below the DOE dose limit of 100 mrem/yr above background. The radiological and nonradiological monitoring program at the GJPO facility included monitoring of activities that generate potentially hazardous or toxic wastes and monitoring of ambient air, surface water, and ground water.

  17. Page 1 of 3 Issuing Department: Human Subjects Protection Office

    E-Print Network [OSTI]

    Oliver, Douglas L.

    Page 1 of 3 2011-024.0 Issuing Department: Human Subjects Protection Office Policy Number: 2011's determination that the submission qualified for expedited review, the category(ies) under which it qualifies for exemption and the category(ies) under which it qualifies. In accordance with Federal regulations, IRB staff

  18. Technical basis for radiological release of Grand Junction Office Building 2. Volume 2, dose assessment supporting data

    SciTech Connect (OSTI)

    NONE

    1997-07-01T23:59:59.000Z

    The second volume of the Grand Junction Office Action Program Technical Basis for Radiological Release of Grand Junction Office Building 2 report includes the data quality objectives (DQO), sampling plan, collected data, and analysis used to model future radiation doses to members of the public occupying Building 2 on the U.S. Department of Energy (DOE) Grand Junction Office (GJO) site. This volume was assembled by extracting relevant components of the Grand Junction Projects Office Remedial Action Project Building 2 Public Dose Evaluation (DOE 1996) and inserting recent additional data that was gathered and dose pathway modeling that was performed. The intent of this document is to provide all derived guidance decisions, assumptions, measured data, testing results, and pathway modeling software input and output data that supports the discussion and determinations presented in Volume 1 of this report. For constructive employment of this document, the reader is encouraged to closely follow Volume 1 for proper association with the segment of information being examined.

  19. Lessons Learned: The Grand Junction Office Site Transfer to Private Ownership

    SciTech Connect (OSTI)

    none,

    2001-02-01T23:59:59.000Z

    The U.S. Department of Energy Grand Junction Office (DOE?GJO) in Grand Junction, Colorado, has played an integral role within the DOE complex for many years. GJO has a reputation for outstanding quality in the performance of complex environmental restoration projects, utilizing state-of-the-art technology. Many of the GJO missions have been completed in recent years. In 1998, DOE Headquarters directed GJO to reduce its mortgage costs by transferring ownership of the site and to lease space at a reasonable rate for its ongoing work. A local community group and GJO have entered into a sales contract; signing of the Quitclaim Deed is planned for February 16, 2001. Site transfer tasks were organized as a project with a critical-path schedule to track activities and a Site Transition Decision Plan was prepared that included a decision process flow chart, key tasks, and responsibilities. Specifically, GJO identified the end state with affected parties early on, successfully dealt with site contamination issues, and negotiated a lease-back arrangement, resulting in an estimated savings of more than 60 percent of facility maintenance costs annually. Lessons learned regarding these transition activities could be beneficial to many other sites.

  20. Grand Junction Projects Office Remedial Action Project Building 2 public dose evaluation. Final report

    SciTech Connect (OSTI)

    Morris, R.

    1996-05-01T23:59:59.000Z

    Building 2 on the U.S. Department of Energy (DOE) Grand Junction Projects Office (GJPO) site, which is operated by Rust Geotech, is part of the GJPO Remedial Action Program. This report describes measurements and modeling efforts to evaluate the radiation dose to members of the public who might someday occupy or tear down Building 2. The assessment of future doses to those occupying or demolishing Building 2 is based on assumptions about future uses of the building, measured data when available, and predictive modeling when necessary. Future use of the building is likely to be as an office facility. The DOE sponsored program, RESRAD-BUILD, Version. 1.5 was chosen for the modeling tool. Releasing the building for unrestricted use instead of demolishing it now could save a substantial amount of money compared with the baseline cost estimate because the site telecommunications system, housed in Building 2, would not be disabled and replaced. The information developed in this analysis may be used as part of an as low as reasonably achievable (ALARA) cost/benefit determination regarding disposition of Building 2.

  1. Final report of the decontamination and decommissioning of the exterior land areas at the Grand Junction Projects Office facility

    SciTech Connect (OSTI)

    Widdop, M.R.

    1995-09-01T23:59:59.000Z

    The US Department of Energy (DOE) Grand Junction Projects Office (GJPO) facility occupies approximately 56.4 acres (22.8 hectares) along the Gunnison River near Grand Junction, Colorado. The site was contaminated with uranium ore and mill tailings during uranium-refining activities conducted by the Manhattan Engineer District and during pilot-milling experiments conducted for the US Atomic Energy Commission`s (AEC`s) domestic uranium procurement program. The GJPO facility was the collection and assay point for AEC uranium and vanadium oxide purchases until the early 1970s. The DOE Decontamination and Decommissioning Program sponsored the Grand Junction Projects Office Remedial Action Project (GJPORAP) to remediate the facility lands, site improvements, and the underlying aquifer. The site contractor, Rust Geotech, was the Remedial Action Contractor for GJPORAP. The exterior land areas of the facility assessed as contaminated have been remediated in accordance with identified standards and can be released for unrestricted use. Restoration of the aquifer will be accomplished through the natural flushing action of the aquifer during the next 50 to 80 years. The remediation of the DOE-GJPO facility buildings is ongoing and will be described in a separate report.

  2. U.S. Department of Energy Grand Junction Projects Office site environmental report for calendar year 1995

    SciTech Connect (OSTI)

    NONE

    1996-05-01T23:59:59.000Z

    This report presents information pertaining to environmental activities conducted during calendar year 1995 at the US Department of Energy (DOE) Grand Junction Projects Office (GJPO) facility in Grand Junction, Colorado. Environmental activities conducted at the GJPO facility during 1995 were associated with mixed-waste treatment, site remediation, off-site dose modeling, and radiological and nonradiological monitoring. As part of the GJPO Mixed-Waste Treatment Program, on-site treatability studies were conducted in 1995 that made use of pilot-scale evaporative-oxidation and thermal-desorption units and bench-scale stabilization. DOE-GJPO used some of its own mixed-waste as well as samples received from other DOE sites for these treatability studies. These studies are expected to conclude in 1996. Removal of radiologically contaminated materials from GJPO facility buildings was conducted under the provisions of the Grand Junction Projects Office Remedial Action Project. Remediation activities included the removal of 394 metric tons of contaminated material from Buildings 18 and 28 and revegetation activities on the GJPO site; remediation was conducted in compliance with applicable permits.

  3. Final report of the radiological release survey of Building 30B at the Grand Junction Office Facility

    SciTech Connect (OSTI)

    Krauland, P.A.; Corle, S.G.

    1997-09-01T23:59:59.000Z

    The U.S. Department of Energy (DOE) Grand Junction Office (GJO) occupies a 61.7-acre facility along the Gunnison River near Grand Junction, Colorado. This site was contaminated with uranium ore concentrates and mill tailings during vanadium refining activities of the Manhattan Engineer District, and during sampling, assaying, pilot milling, storage, and brokerage activities conducted for the U.S. Atomic Energy Commission`s domestic uranium procurement program. The DOE Defense Decontamination and Decommissioning Program established the GJO Remedial Action Project (GJORAP) to clean up and restore the facility lands, improvements, and underlying aquifer. WASTREN-Grand Junction is the site contractor for the facility and the remedial action contractor for GJORAP. Building 30B and the underlying soil were found not to be radiologically contaminated; therefore, the building can be released for unrestricted use. Placards have been placed at the building entrances indicating the completion of the radiological release survey and prohibiting the introduction of any radioactive materials within the building without written approvals from the GJO Facilities Operations Manager. This document was prepared in response to a DOE-GJO request for an individual final release report for each GJO building.

  4. Political Science Page 219Sonoma State University 2011-2012 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Political Science Page 219Sonoma State University 2011-2012 Catalog Department Office Stevenson *Faculty Early Retirement Program Programs Offered Bachelor of Arts in Political Science Master's in Public Administration Minor in Political Science Teaching Credential Preparation Certificate

  5. Page 308 Political Science Sonoma State University 2006-2008 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Page 308 Political Science Sonoma State University 2006-2008 Catalog Department Office Stevenson Early Retirement Program Programs Offered Bachelor of Arts in Political Science Master's in Public Administration Minor in Political Science Teaching Credential Preparation Certificate Program

  6. Page Not Found | U.S. DOE Office of Science (SC)

    Office of Science (SC) Website

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  7. Education: ELSE Page 115Sonoma State University 2011-2012 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    's Credential Office for updates on program details and policy statements and to visit the education websiteEducation: ELSE Page 115Sonoma State University 2011-2012 Catalog Department Office Stevenson Hall 1078 (707) 664-4203 fax: (707) 664-2483 www.sonoma.edu/education aDministrative cOOrDinatOr Leslie

  8. Page 148 Education: ELSE Sonoma State University 2006-2008 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    to consult the School of Education's Credential Office for updates on program details and policy statementsPage 148 Education: ELSE Sonoma State University 2006-2008 Catalog Department Office Stevenson Hall 1078 (707) 664-4203 fax (707) 664-2483 www.sonoma.edu/education aDministrative cOOrDinatOr Leslie

  9. Geothermal Technologies Office Home Page | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  10. DOE - Office of Legacy Management -- Climax Uranium Co Grand Junction Mill

    Office of Legacy Management (LM)

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  11. Page 1 of 3 ADMINISTERED BY: Office of Vice

    E-Print Network [OSTI]

    Kulp, Mark

    for the purpose of reducing utility. AUTHORITY Part Two, Chapter III, Section VII of the Bylaws and Rules is utility cost savings. 3. The three fundamental methods of conserving energy are: a. Eliminating non lists building classrooms and associated air handling units. The Office of Academic Affairs reviews

  12. Page 1 of 4 ADMINISTERED BY: Office of the President

    E-Print Network [OSTI]

    Kulp, Mark

    Privately owned vehicles utilized for the conduct of State and/or University Business: An individual and collision insurance coverage by the Office of Risk Management. b. Privately owned vehicles utilized government. The purpose of the Driver Safety Program is to address safety, control use of vehicles, reduce

  13. Solar Energy Applications Page 1 Rev. September 23, 2009 Field Office Serial

    E-Print Network [OSTI]

    Laughlin, Robert B.

    Solar Energy Applications Page 1 Rev. September 23, 2009 Field Office Serial Number Project Name) Located in Maricopa Co., north of Mobile AZ. Pending 9. AZA 034187 Sonoran Solar Energy Project Boulevard Co. South of Gila Bend Pending #12;Solar Energy Applications Page 2 Rev. September 23, 2009 Field

  14. Confirmatory radiological survey of the Grand Junction Projects Office Remedial Action Project exterior portions, 1989-1995

    SciTech Connect (OSTI)

    Forbes, G.H.; Egidi, P.V.

    1997-04-01T23:59:59.000Z

    The purpose of this independent assessment was to provide the U.S. Department of Energy (DOE) with an independent verification (IV) that the soil at the Grand Junction Projects Office (GJPO) complies with applicable DOE guidelines. Oak Ridge National Laboratory/ Environmental Technology Section (ORNL/ETS) which is also located at the GJPO, was assigned by DOE as the Independent Verification Contractor (IVC). The assessment included reviews of the decontamination and decommissioning plan, annual environmental monitoring reports, data in the pre- and post-remedial action reports, reassessment reports and IV surveys. Procedures and field methods used during the remediation were reviewed, commented on, and amended as needed. The IV surveys included beta-gamma and gamma radiation scans, soil sampling and analyses. Based on the data presented in the post-remedial action report and the results of the IV surveys, the remediation of the outdoor portions of the GJPO has achieved the objectives. Residual deposits of uranium contamination may exist under asphalt because the original characterization was not designed to identify uranium and subsequent investigations were limited. The IVC recommends that this be addressed with the additional remediation. The IVC is working with the remedial action contractor (RAC) to assure that final documentation WM be sufficient for certification. The IVC will address additional remediation of buildings, associated utilities, and groundwater in separate reports. Therefore, this is considered a partial verification.

  15. Page 1 of 7 ADMINISTERED BY: Office of Vice

    E-Print Network [OSTI]

    Kulp, Mark

    affected. Keys are returned and access cards deactivated. Identification cards, library materials - position responsible for all University mechanical keys and access card activities. #12;Page 2 of 7 2 Access Coordinator position responsible at the departmental level for assisting employees with key

  16. pages)

    Office of Environmental Management (EM)

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  17. pages)

    Office of Environmental Management (EM)

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  18. Economics Page 105Sonoma State University 2008-2010 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Economics Page 105Sonoma State University 2008-2010 Catalog Department Office Stevenson Hall 2042 Offered Bachelor of arts in economics minor in economics secondary teaching credential preparation Economics is a social science that focuses on the organization of economic systems for the production

  19. Economics Page 101Sonoma State University 2012-2013 Catalog DEPARTMENT OFFICE

    E-Print Network [OSTI]

    Ravikumar, B.

    Economics Page 101Sonoma State University 2012-2013 Catalog ECONOMICS DEPARTMENT OFFICE Stevenson Visser *Richard West *Faculty Early Retirement Program Programs Offered Bachelor of Arts in Economics Minor in Economics Economics is a social science that focuses on the organization of economic systems

  20. Economics Page 129Sonoma State University 2006-2008 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Economics Page 129Sonoma State University 2006-2008 Catalog Department Office Stevenson Hall 2042 Bachelor of Arts in Economics Minor in Economics Secondary Teaching Credential Preparation Economics is a social science that focuses on the organization of economic systems for the production of goods

  1. Economics Page 99Sonoma State University 2014-2015 Catalog DEPARTMENT OFFICE

    E-Print Network [OSTI]

    Ravikumar, B.

    Economics Page 99Sonoma State University 2014-2015 Catalog ECONOMICS DEPARTMENT OFFICE Stevenson Visser *Richard West *Faculty Early Retirement Program Programs Offered Bachelor of Arts in Economics Minor in Economics Economics is a social science that focuses on the organization of economic systems

  2. Page 204 Geology Sonoma State University 2006-2008 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Page 204 Geology Sonoma State University 2006-2008 Catalog Department Office Darwin Hall 116 (707) 664-2334 www.sonoma.edu/geology Department chair Matthew J. James aDministrative cOOrDinatOr Gayle Offered Bachelor of Science in Geology Bachelor of Arts in Geology Minor in Geology Secondary Education

  3. Geology Page 145Sonoma State University 2012-2013 Catalog DEPARTMENT OFFICE

    E-Print Network [OSTI]

    Ravikumar, B.

    Geology Page 145Sonoma State University 2012-2013 Catalog GEOLOGY DEPARTMENT OFFICE Darwin Hall 116 (707) 664-2334 www.sonoma.edu/geology DEPARTMENT CHAIR Matthew J. James ADMINISTRATIVE COORDINATOR Cory Programs Offered Bachelor of Science in Geology Bachelor of Arts in Earth Sciences Minor in Geology Minor

  4. Page 156 Geology Sonoma State University 2008-2010 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Page 156 Geology Sonoma State University 2008-2010 Catalog Department Office Darwin Hall 116 (707) 664-2334 www.sonoma.edu/geology Department chair Matthew J. James aDministrative cOOrDinatOr Gayle Early Retirement Program Programs Offered Bachelor of science in Geology Bachelor of arts in Geology

  5. Page 148 Geology Sonoma State University 2014-2015 Catalog DEPARTMENT OFFICE

    E-Print Network [OSTI]

    Ravikumar, B.

    Page 148 Geology Sonoma State University 2014-2015 Catalog GEOLOGY DEPARTMENT OFFICE Darwin Hall 116 (707) 664-2334 www.sonoma.edu/geology DEPARTMENT CHAIR Matthew J. James ADMINISTRATIVE COORDINATOR. Smith Programs Offered Bachelor of Science in Geology Bachelor of Arts in Earth Science Minor in Geology

  6. Page 148 Geology Sonoma State University 2011-2012 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Page 148 Geology Sonoma State University 2011-2012 Catalog Department Office Darwin Hall 116 (707) 664-2334 www.sonoma.edu/geology Department chair Matthew J. James aDministrative cOOrDinatOr Jen E. Smith Programs Offered Bachelor of Science in Geology Bachelor of Arts in Earth Sciences Minor

  7. Page144 Geology Sonoma State University 2013-2014 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Page144 Geology Sonoma State University 2013-2014 Catalog geology Department Office DarwinHall116 (707)664-2334 www.sonoma.edu/geology Department chair MatthewJ.James aDministrative cE.Smith Programs Offered Bachelor of Science in Geology Bachelor of Arts in Earth Science Minor in Geology Minor

  8. Political Science Page 229Sonoma State University 2008-2010 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Political Science Page 229Sonoma State University 2008-2010 Catalog Department Office Stevenson Program Programs Offered Bachelor of arts in political science master's in public administration minor in political science teaching credential preparation certificate program in the administration of nonprofit

  9. Astronomy Page 65Sonoma State University 2012-2013 Catalog DEPARTMENT OFFICE

    E-Print Network [OSTI]

    Ravikumar, B.

    Astronomy Page 65Sonoma State University 2012-2013 Catalog ASTRONOMY DEPARTMENT OFFICE Darwin Hall Hongtao Shi * Faculty Early Retirement Program Program Offered Minor in Astronomy Astronomy, offered as a minor in the Department of Physics and Astronomy, is the study of the planets, stars, and galaxies

  10. Astronomy Page 73Sonoma State University 2006-2008 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Astronomy Page 73Sonoma State University 2006-2008 Catalog Department Office Darwin Hall 300 (707 S. Tenn *Faculty Early Retirement Program Program Offered Minor in Astronomy Astronomy, offered as a minor in the Department of Physics and Astronomy, is the study of the planets, stars, and galaxies

  11. Page 66 Astronomy Sonoma State University 2011-2012 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Page 66 Astronomy Sonoma State University 2011-2012 Catalog Department Office Darwin Hall 300 (707 Program Offered Minor in Astronomy Astronomy, offered as a minor in the Department of Physics and Astronomy, is the study of the planets, stars, and galaxies in the universe beyond the earth's atmosphere

  12. Astronomy Page 63Sonoma State University 2014-2015 Catalog DEPARTMENT OFFICE

    E-Print Network [OSTI]

    Ravikumar, B.

    Astronomy Page 63Sonoma State University 2014-2015 Catalog ASTRONOMY DEPARTMENT OFFICE Darwin Hall Shi * Faculty Early Retirement Program Program Offered Minor in Astronomy Astronomy, offered as a minor in the Department of Physics and Astronomy, is the study of the planets, stars, and galaxies

  13. Page 66 Astronomy Sonoma State University 2008-2010 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Page 66 Astronomy Sonoma State University 2008-2010 Catalog Department Office Darwin Hall 300 (707 minor in astronomy Astronomy, offered as a minor in the Department of Physics and Astronomy of Astronomy and Astrophysics, the application of physics principles to astronomical observations, today deal

  14. Biology Page 67Sonoma State University 2008-2010 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Biology Page 67Sonoma State University 2008-2010 Catalog Department Office Darwin Hall 200 (707) 664-2189 www.sonoma.edu/biology/ Department chair Richard Whitkus aDministrative cOOrDinatOr Kathleen F. Thatcher Richard Whitkus Programs Offered Bachelor of arts in Biology Bachelor of science

  15. Biology Page 67Sonoma State University 2011-2012 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Biology Page 67Sonoma State University 2011-2012 Catalog Department Office Darwin Hall 200 (707) 664-2189 www.sonoma.edu/biology/ Department chair Richard Whitkus aDministrative cOOrDinatOr Kathleen. Rank Richard Whitkus Programs Offered Bachelor of Arts in Biology Bachelor of Science in Biology Master

  16. Biology Page 75Sonoma State University 2006-2008 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Biology Page 75Sonoma State University 2006-2008 Catalog Department Office Darwin Hall 121 (707) 664-2189 www.sonoma.edu/biology/ Department chair James L. Christmann aDministrative c Thatcher Richard Whitkus *Faculty Early Retirement Program Programs Offered Bachelor of Arts in Biology

  17. Philosophy Page 217Sonoma State University 2014-2015 Catalog DEPARTMENT OFFICE

    E-Print Network [OSTI]

    Ravikumar, B.

    Philosophy Page 217Sonoma State University 2014-2015 Catalog PHILOSOPHY DEPARTMENT OFFICE Nichols Hall 363 (707) 664-2163 www.sonoma.edu/philosophy/ DEPARTMENT CHAIR John Sullins ADMINISTRATIVE Bachelor of Arts in Philosophy Pre-Law/Applied Ethics (Optional) Concentration Minor in Philosophy

  18. Philosophy Page209Sonoma State University 2013-2014 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Philosophy Page209Sonoma State University 2013-2014 Catalog philosophy Department Office NicholsHall363 (707)664-2163 www.sonoma.edu/philosophy/ Department chair GillianParker aDministrative c of Arts in Philosophy Pre-Law/Applied Ethics (Optional) Concentration Minor in Philosophy

  19. Page 296 Philosophy Sonoma State University 2006-2008 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Page 296 Philosophy Sonoma State University 2006-2008 Catalog Department Office Nichols Hall 363 (707) 664-2163 www.sonoma.edu/philosophy/ Department chair Roger Bell aDministrative cOOrDinatOr Brenda of Arts in Philosophy Minor in Philosophy The Philosophical Life The value of a philosophy degree stems

  20. Page 220 Philosophy Sonoma State University 2008-2010 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Page 220 Philosophy Sonoma State University 2008-2010 Catalog Department Office Nichols Hall 363 (707) 664-2163 www.sonoma.edu/philosophy/ Department chair John Sullins aDministrative c Bachelor of arts in philosophy minor in philosophy The Philosophical Life The value of a philosophy degree

  1. Philosophy Page 211Sonoma State University 2012-2013 Catalog DEPARTMENT OFFICE

    E-Print Network [OSTI]

    Ravikumar, B.

    Philosophy Page 211Sonoma State University 2012-2013 Catalog PHILOSOPHY DEPARTMENT OFFICE Nichols Hall 363 (707) 664-2163 www.sonoma.edu/philosophy/ DEPARTMENT CHAIR Gillian Parker ADMINISTRATIVE Bachelor of Arts in Philosophy Pre-Law/Applied Ethics (Optional) Concentration Minor in Philosophy

  2. POLICIES AND PROCEDURES Provost's Office Approved PEC: March 25, 2008 Page 1 of 2

    E-Print Network [OSTI]

    Bolch, Tobias

    POLICIES AND PROCEDURES Provost's Office Approved PEC: March 25, 2008 Page 1 of 2 Policies and Procedures Manual SUBJECT: Policies and Procedures Manual 1. Purpose The Policies and Procedures Manual provides a uniform method of publishing University policies and procedures. The manual: · Provides a ready

  3. Office of Energy Efficiency and Renewable Energy U.S. Department of Energy Page 1

    E-Print Network [OSTI]

    Patzek, Tadeusz W.

    Office of Energy Efficiency and Renewable Energy U.S. Department of Energy ­ Page 1 Argonne greenhouse gas emissions. In terms of key energy and environmental benefits, cornstarch ethanol comes out. This figure illustrates the energy inputs used to produce and deliver a million British Thermal Units (Btu

  4. OUHSC Office of Research Administration For ORA Use Only Subcontract Cover Page Subcontract ID#: __________________

    E-Print Network [OSTI]

    Oklahoma, University of

    OUHSC Office of Research Administration For ORA Use Only Subcontract Cover Page Subcontract ID Justification (Can be in NIH Format) Not applicable if Subcontractor is Foreign. Purchasing Approval PURCHASING (attach completed form) No Exempt: For Purchasing Use Only Date received in Purchasing: Purchasing

  5. Chemistry Page 103Sonoma State University 2006-2008 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Chemistry Page 103Sonoma State University 2006-2008 Catalog Department Office Darwin Hall 300 (707) 664-2119 www.sonoma.edu/chemistry Department chair Lynn R. Cominsky aDministrative cOOrDinatOr Cathi *Faculty Early Retirement Program Programs Offered Bachelor of Science in Chemistry (certified

  6. Chemistry Page 87Sonoma State University 2008-2010 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    Chemistry Page 87Sonoma State University 2008-2010 Catalog Department Office Darwin Hall 300 (707) 664-2119 www.sonoma.edu/chemistry Department chair Meng-Chih Su aDministrative cOOrDinatOr Cathi Cari of science in chemistry (certified by the american chemical society) Bachelor of arts in chemistry Bachelor

  7. Chemistry Page 81Sonoma State University 2014-2015 Catalog DEPARTMENT OFFICE

    E-Print Network [OSTI]

    Ravikumar, B.

    Chemistry Page 81Sonoma State University 2014-2015 Catalog CHEMISTRY DEPARTMENT OFFICE Darwin Hall 300 (707) 664-2119 www.sonoma.edu/chemistry DEPARTMENT CHAIR Jennifer Whiles Lillig Faculty Steven Programs Offered Bachelor of Science in Chemistry (Certified by the American Chemical Society) Bachelor

  8. PTR Process Best Practices 2010-11 Page 1 of 8 Office of the Dean

    E-Print Network [OSTI]

    Wells, Mathew G. - Department of Physical and Environmental Sciences, University of Toronto

    PTR Process Best Practices 2010-11 Page 1 of 8 Office of the Dean University of Toronto Scarborough PTR Assessment Process Best Practice Guidelines for Chairs1 These guidelines outline what UTSC believes to be the best practices for the PTR process

  9. Page 1 of 7 | Setup of Apple Mail | Studies Office | University of Aarhus | Oct 2007 How to set up

    E-Print Network [OSTI]

    Page 1 of 7 | Setup of Apple Mail | Studies Office | University of Aarhus | Oct 2007 How to set up Apple Mail to check email from the University of Aarhus In the Mail menu, select Indstillinger... #12;Page 2 of 7 | Setup of Apple Mail | Studies Office | University of Aarhus | Oct 2007 Click the + button

  10. Grand Junction Projects Office Remedial Action Project: Feasibility test of real-time radiation monitoring during removal of surface contamination from concrete floors

    SciTech Connect (OSTI)

    Leino, R.; Corle, S.

    1995-10-01T23:59:59.000Z

    This feasibility test was conducted to determine if real-time radiation-monitoring instruments could be mounted on decontamination machines during remediation activities to provide useful and immediate feedback to equipment operators. The U.S. Department of Energy (DOE) sponsored this field test under the Grand Junction Projects Office Remedial Action Project (GJPORAP) to identify a more efficient method to remove radiological contamination from concrete floor surfaces. This test demonstrated that project durations and costs may be reduced by combining radiation-monitoring equipment with decontamination machines. The test also demonstrated that a microprocessor-based instrument such as a radiation monitor can withstand the type of vibration that is characteristic of floor scabblers with no apparent damage. Combining radiation-monitoring equipment with a decontamination machine reduces the time and costs required to decontaminate concrete surfaces. These time and cost savings result from the reduction in the number of interim radiological surveys that must be conducted to complete remediation. Real-time radiation monitoring allows equipment operators to accurately monitor contamination during the decontamination process without support from radiological technicians, which also reduces the project duration and costs. The DOE Grand Junction Projects Office recommends more extensive and rigorous testing of this real-time radiation monitoring to include a variety of surfaces and decontamination machines. As opportunities arise, additional testing will be conducted under GJPORAP.

  11. E-Print Network 3.0 - addressable three-way junctions Sample...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    junctions can... Project Description: page 1 Project Description I. Introduction: Josephson junction networks Over... the past 25 years, superconducting Josephson junctions...

  12. Page 118 Education: Educational Leadership and Special Education (ELSE) Sonoma State University 2008-2010 Catalog Department Office

    E-Print Network [OSTI]

    Ravikumar, B.

    are advised to consult the School of Education's Credential Office for updates on program details and policyPage 118 Education: Educational Leadership and Special Education (ELSE) Sonoma State University 2008-2010 Catalog Department Office Stevenson Hall 1078 (707) 664-4203 fax (707) 664-2483 www.sonoma.edu/education

  13. Environmental Assessment and Finding of No Significant Impact: Transfer of the Department of Energy Grand Junction Office to Non-DOE Ownership

    SciTech Connect (OSTI)

    N /A

    2000-04-25T23:59:59.000Z

    The scope of this environmental assessment (EA) is to analyze the potential consequences of the Proposed Action on human health and the environment. Accordingly, this EA contains an introduction to the site and the history of the Grand Junction Office (Chapter One), a description of the Purpose and Need for Agency Action (Chapter Two), a description of the Proposed Action and Alternatives (Chapter Three), and the description of the Affected Environment and the Environmental Consequences (Chapter Four). Resource categories addressed in this EA include geology, soils and topography, groundwater and surface water, floodplains and wetlands, land use and infrastructure, human health, ecological resources, cultural resources, air quality, noise, visual resources, solid and hazardous waste management, transportation, and socioeconomic and environmental justice.

  14. JOURNAL DE PHYSIQUE Colloque C6, supplgment au no 8, Tome 39, aotit 1978,page C6-575 NOISE DOWN-CONVERSION IN A PUMPED JOSEPHSON JUNCTION

    E-Print Network [OSTI]

    Boyer, Edmond

    -CONVERSION IN A PUMPED JOSEPHSON JUNCTION NASA Goddard Institute for Space Studies, Goddard Space Flight Center, New York Josephson junction i s stu- died numerically. Calculation shows t h a t the excess low-frequency noise i n simulator has been used to compute the low- frequency noise i n a pumped Josephson junction / 4 / . Although

  15. Nanotube junctions

    DOE Patents [OSTI]

    Crespi, Vincent Henry (Darien, IL); Cohen, Marvin Lou (Berkeley, CA); Louie, Steven Gwon Sheng (Berkeley, CA); Zettl, Alexander Karlwalter (Kensington, CA)

    2003-01-01T23:59:59.000Z

    The present invention comprises a new nanoscale metal-semiconductor, semiconductor-semiconductor, or metal-metal junction, designed by introducing topological or chemical defects in the atomic structure of the nanotube. Nanotubes comprising adjacent sections having differing electrical properties are described. These nanotubes can be constructed from combinations of carbon, boron, nitrogen and other elements. The nanotube can be designed having different indices on either side of a junction point in a continuous tube so that the electrical properties on either side of the junction vary in a useful fashion. For example, the inventive nanotube may be electrically conducting on one side of a junction and semiconducting on the other side. An example of a semiconductor-metal junction is a Schottky barrier. Alternatively, the nanotube may exhibit different semiconductor properties on either side of the junction. Nanotubes containing heterojunctions, Schottky barriers, and metal-metal junctions are useful for microcircuitry.

  16. Grand Junction projects office mixed-waste treatment program, VAC*TRAX mobile treatment unit process hazards analysis

    SciTech Connect (OSTI)

    Bloom, R.R.

    1996-04-01T23:59:59.000Z

    The objective of this report is to demonstrate that a thorough assessment of the risks associated with the operation of the Rust Geotech patented VAC*TRAX mobile treatment unit (MTU) has been performed and documented. The MTU was developed to treat mixed wastes at the US Department of Energy (DOE) Albuquerque Operations Office sites. The MTU uses an indirectly heated, batch vacuum dryer to thermally desorb organic compounds from mixed wastes. This process hazards analysis evaluated 102 potential hazards. The three significant hazards identified involved the inclusion of oxygen in a process that also included an ignition source and fuel. Changes to the design of the MTU were made concurrent with the hazard identification and analysis; all hazards with initial risk rankings of 1 or 2 were reduced to acceptable risk rankings of 3 or 4. The overall risk to any population group from operation of the MTU was determined to be very low; the MTU is classified as a Radiological Facility with low hazards.

  17. Josephson junction

    SciTech Connect (OSTI)

    Wendt, Joel R. (Albuquerque, NM); Plut, Thomas A. (Albuquerque, NM); Martens, Jon S. (Sunnyvale, CA)

    1995-01-01T23:59:59.000Z

    A novel method for fabricating nanometer geometry electronic devices is described. Such Josephson junctions can be accurately and reproducibly manufactured employing photolithographic and direct write electron beam lithography techniques in combination with aqueous etchants. In particular, a method is described for manufacturing planar Josephson junctions from high temperature superconducting material.

  18. Josephson junction

    SciTech Connect (OSTI)

    Wendt, J.R.; Plut, T.A.; Martens, J.S.

    1995-05-02T23:59:59.000Z

    A novel method for fabricating nanometer geometry electronic devices is described. Such Josephson junctions can be accurately and reproducibly manufactured employing photolithographic and direct write electron beam lithography techniques in combination with aqueous etchants. In particular, a method is described for manufacturing planar Josephson junctions from high temperature superconducting material. 10 figs.

  19. Office

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr MayAtmosphericNuclear Security Administration the1 - September 2006 The 2002 Wholesale Power Rate Schedules (base rates) Developed and

  20. OFFICE,

    Office of Legacy Management (LM)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr May Jun Jul(Summary) "ofEarlyEnergyDepartment ofDepartment ofof EnergyYou$0.C. 20545 OCT 28 1% - :NEW; I.-'7-TAC~$,. ' e' , U

  1. Page

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion | Department ofT ib l L d F SSalesOE0000652 Srivastava,Pacific1of Page This final rule3of Page

  2. Home Page Refresh News Image | OSTI, US Dept of Energy, Office of

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr MayAtmospheric Optical Depth7-1D: Vegetation ProposedUsingFun withconfinement plasmas inPortal Startupdefault SignPages

  3. Page

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion | Department ofT ib l L d F SSalesOE0000652 Srivastava,Pacific1of Page This final rule

  4. Page

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion | Department ofT ib l L d F SSalesOE0000652 Srivastava,Pacific1of Page This final rule3 The

  5. Page

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion | Department ofT ib l L d F SSalesOE0000652 Srivastava,Pacific1of Page This final rule3 The2

  6. Page

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion | Department ofT ib l L d F SSalesOE0000652 Srivastava,Pacific1of Page This final rule3

  7. OSTI Launches Re-Designed Home Page | OSTI, US Dept of Energy, Office of

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr May JunDatastreamsmmcrcalgovInstrumentsrucLas Conchas recoveryLaboratory |CHEMPACKRadiologicalEric DulmesHow ORISEOffice ofScientific and

  8. DOE Pages XML Data Services Manual | OSTI, US Dept of Energy, Office of

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr MayAtmospheric Optical Depth7-1D: Vegetation Proposed Newcatalyst phases onOrganization FYBeau Newman Select80.225,December 2014Scientific

  9. Back to the ASCR Program Documents Page | U.S. DOE Office of Science (SC)

    Office of Science (SC) Website

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr MayAtmosphericNuclear SecurityTensile Strain Switched5 IndustrialIsadore Perlman, 1960RealStephanieUseful2-3,AtmosphericBES

  10. Page

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr MayAtmosphericNuclear Security Administration the1 - September 2006 TheSteven Ashby Dr. Steven Para9EnvironmentalPage of 1 pages 4b.

  11. New Insights for Improving the Designs of Flexible Duct Junction Boxes (Fact Sheet), Building America Case Study: Technology Solutions for New and Existing Homes, Building Technologies Office (BTO)

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious Rank EERE:Year in3.pdfEnergy HealthCommentsAugustNationalMarkets withCohen | Department ofa Day |New

  12. 11-06-03 3:43 AMPolice officer seeks truth in South Africa -Winnipeg Free Press Page 1 of 3http://www.printthis.clickability.com/pt/cpt?expire=&title=Police+offic...com%2Flocal%2Fpolice-officer-seeks-truth-in-south-africa-123086533.html

    E-Print Network [OSTI]

    Martin, Jeff

    11-06-03 3:43 AMPolice officer seeks truth in South Africa - Winnipeg Free Press Page 1 of 3http://www.printthis.clickability.com/pt/cpt?expire=&title=Police+offic...com%2Flocal%2Fpolice-officer-seeks-truth-in-south-africa truth in South Africa By: Nick Martin Posted: 06/3/2011 1:00 AM | Comments: 0 #12;11-06-03 3:43 AMPolice

  13. 04/25/06Office of the Governor of the State of California Page 1 of 2http://www.gov.ca.gov/index.php?/print-version/executive-order/183/

    E-Print Network [OSTI]

    04/25/06Office of the Governor of the State of California Page 1 of 2http://www.gov.ca.gov/index.php;4/25/06Office of the Governor of the State of California Page 2 of 2http://www.gov.ca.gov/index.php

  14. Office of Chief Financial Officer

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious Rank EERE:Year in3.pdfEnergyDepartment of Energy(National1 -OSSGasofOffice Protocols OfficeElk Hills

  15. Office of Chief Financial Officer

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious Rank EERE:Year in3.pdfEnergyDepartment of Energy(National1 -OSSGasofOffice Protocols OfficeElk

  16. Office of Chief Financial Officer

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious Rank EERE:Year in3.pdfEnergyDepartment of Energy(National1 -OSSGasofOffice Protocols OfficeElkElk

  17. JOURNAL DE PHYSIQUE Colloque C6, supplPment au no 8, Tome 39, aotit 1978,page C6-550 EFFECT OF ORDER PARAMETER RELAXATION ON JOSEPHSON JUNCTION TRANSIENTS

    E-Print Network [OSTI]

    Boyer, Edmond

    OF ORDER PARAMETER RELAXATION ON JOSEPHSON JUNCTION TRANSIENTS f f X H. suhlt, J. Hurell , A.H. Silver state seems to become possible. The behavior of circuits containing Josephson junctions is generally

  18. EA-1037: Uranium Lease Management Program, Grand Junction, Colorado

    Broader source: Energy.gov [DOE]

    This EA evaluates the environmental impacts of the U.S. Department of Energy's Grand Junction Projects Office's proposal to maintain and preserve the nation's immediately accessible supply of...

  19. Holographic Josephson Junctions

    SciTech Connect (OSTI)

    Horowitz, Gary T.; Santos, Jorge E.; Way, Benson [Department of Physics, University of California, Santa Barbara, California 93106-4030 (United States)

    2011-06-03T23:59:59.000Z

    We construct a gravitational dual of a Josephson junction. Calculations on the gravity side reproduce the standard relation between the current across the junction and the phase difference of the condensate. We also study the dependence of the maximum current on the temperature and size of the junction and reproduce familiar results.

  20. A Holographic Josephson Junction

    E-Print Network [OSTI]

    Gary T. Horowitz; Jorge E. Santos; Benson Way

    2012-02-23T23:59:59.000Z

    We construct a gravitational dual of a Josephson junction. Calculations on the gravity side reproduce the standard relation between the current across the junction and the phase difference of the condensate. We also study the dependence of the maximum current on the temperature and size of the junction and reproduce familiar results.

  1. OUHSC Office of Research Administration For ORA Use Only Independent Contractor Agreement (ICA) Cover Page ICA ID#: _________________________

    E-Print Network [OSTI]

    Oklahoma, University of

    OUHSC Office of Research Administration For ORA Use Only Independent Contractor Agreement (ICA if contractor is a business with a TIN or EIN. Purchasing Approval PURCHASING APPROVAL Required for all ) No Exempt: For Purchasing Use Only Date received in Purchasing: Purchasing Approval: Yes No Notes: By

  2. Holographic SIS Josephson Junction

    E-Print Network [OSTI]

    Wang, Yong-Qiang; Cai, Rong-Gen; Takeuchi, Shingo; Zhang, Hai-Qing

    2012-01-01T23:59:59.000Z

    We construct a holographic model for the superconductor-insulator-superconductor (SIS) Josephson junction at zero temperature by considering a complex scalar field coupled with a U(1) gauge field in the four dimensional Anti de Sitter soliton background. As a result, we successfully reproduce many characteristic features of the Josephson junction in condensed matter physics, such as the sine relation between the DC current and the phase difference across the junction.

  3. E-Print Network 3.0 - adherens junction homeostasis Sample Search...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    results for: adherens junction homeostasis Page: << < 1 2 3 4 5 > >> 1 Molecular Biology of the Cell Vol. 12, 34653475, November 2001 Summary: and Is Required for Adherens...

  4. E-Print Network 3.0 - adherens junction protein Sample Search...

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    search results for: adherens junction protein Page: << < 1 2 3 4 5 > >> 1 Molecular Biology of the Cell Vol. 12, 34653475, November 2001 Summary: barrier and prevent the...

  5. E-Print Network 3.0 - adherens junction type Sample Search Results

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    search results for: adherens junction type Page: << < 1 2 3 4 5 > >> 1 Molecular Biology of the Cell Vol. 12, 34653475, November 2001 Summary: of hypodermal and intestinal...

  6. Project Description: page 1 Project Description

    E-Print Network [OSTI]

    Segall, Ken

    Project Description: page 1 Project Description I. Introduction: Josephson junction networks Over the past 25 years, superconducting Josephson junctions have gradually become one of the major topics standards. Our research uses Josephson junctions as model systems for problems in nonlinear and neural

  7. Josephson junction element

    SciTech Connect (OSTI)

    Kawabe, U.; Tarutani, Y.; Yamada, H.

    1982-03-09T23:59:59.000Z

    A sandwich-type josephson junction element wherein a counter electrode is made of a mo-re alloy which contains 10-90 atomic-% of re. The josephson junction element has a high operating temperature, and any deterioration thereof attributed to a thermal cycle is not noted.

  8. Three-junction solar cell

    DOE Patents [OSTI]

    Ludowise, Michael J. (Cupertino, CA)

    1986-01-01T23:59:59.000Z

    A photovoltaic solar cell is formed in a monolithic semiconductor. The cell contains three junctions. In sequence from the light-entering face, the junctions have a high, a medium, and a low energy gap. The lower junctions are connected in series by one or more metallic members connecting the top of the lower junction through apertures to the bottom of the middle junction. The upper junction is connected in voltage opposition to the lower and middle junctions by second metallic electrodes deposited in holes 60 through the upper junction. The second electrodes are connected to an external terminal.

  9. Holographic SIS Josephson Junction

    E-Print Network [OSTI]

    Yong-Qiang Wang; Yu-Xiao Liu; Rong-Gen Cai; Shingo Takeuchi; Hai-Qing Zhang

    2012-09-23T23:59:59.000Z

    We construct a holographic model for the superconductor-insulator-superconductor (SIS) Josephson junction at zero temperature by considering a complex scalar field coupled with a Maxwell field in the four-dimensional anti-de Sitter soliton background. From the gravity side we reproduce the sine relation between the Josephson current and the phase difference across the junction. We also study the dependence of the maximal current on the dimension of the condensate operator and on the width of the junction, and obtain expected results.

  10. watch office

    National Nuclear Security Administration (NNSA)

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  11. Fellows' Officers

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  12. Office of Chief Financial Officer

    Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

    2001-11-27T23:59:59.000Z

    Page Change 1 to DOE O 520.1 modifies the responsibility statement to include NNSA Field CFO positions, modifies Heads of Field Elements responsibilities for consistency with the CFO responsibilities, and makes a minor change to reflect the establishment of the Office of Management, Budget and Evaluation. Cancels SEN 34-9.

  13. The Ohio State University Office of Human Resources, Policy 8.15 Corrective Action Resources Edited 12/19/13, Page 1 of 1 Corrective Action and Involuntary Termination

    E-Print Network [OSTI]

    Howat, Ian M.

    Edited 12/19/13, Page 1 of 1 Corrective Action and Involuntary Termination Policy 8.15 Office of Human-292-2800 ohrc@hr.osu.edu hr.osu.edu/ohrc Appeals for CCS staff only; 3rd Level Notice (Termination) State

  14. Thesis office Internship office

    E-Print Network [OSTI]

    Thesis office Internship office Servicedesk Smartstudie Look at the thesis project flowchart when (education). Submit your thesis application form to: ThesisOffice-TNW@tudelft.nl. At the internship office you can find information about internships, other student experiences and tips. Contact: Internship

  15. OFFICE OF INSPECTOR GENERAL

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of Inspector General Office0-72.pdfGeorgeDoesn't32DepartmentWells517 Federaliof Energy

  16. Modeling Schottky barrier SINIS junctions

    E-Print Network [OSTI]

    Freericks, Jim

    : cond-mat/0001269 J. K. Freericks, Georgetown University, Josephson Junction talk, 2001 #12;Josephson). J. K. Freericks, Georgetown University, Josephson Junction talk, 2001 S I S I I V V Ic #12 University, Josephson Junction talk, 2001 S N S I I V V Ic #12;Digital Electronics and RSFQ logic · Rapid

  17. Superconductive tunnel junction integrated circuit

    SciTech Connect (OSTI)

    Jillie, D.W. Jr.; Smith, L.N.

    1984-02-07T23:59:59.000Z

    Josephson Junction integrated circuits of the current injection type and magnetically controlled type utilize a superconductive layer that forms both Josephson Junction electrode for the Josephson Junction devices on the integrated circuit as well as a ground plane for the integrated circuit. Large area Josephson Junctions are utilized for effecting contact to lower superconductive layers and islands are formed in superconductive layers to provide isolation between the groundplane function and the Josephson Junction electrode function as well as to effect crossovers. A superconductor-barrier-superconductor trilayer patterned by local anodization is also utilized with additional layers formed thereover. Methods of manufacturing the embodiments of the invention are disclosed.

  18. Spin Torques in Magnetic and Superconducting Tunnel Junctions

    E-Print Network [OSTI]

    Hoffman, Silas Eli

    2012-01-01T23:59:59.000Z

    Josephson Junctions . . . . . . . . . . . . . . . . . . . . .Nonlinear Dynamics in a Magnetic Josephson Junction . . . .in a magnetic Josephson junction. Phys. Rev. B, 86:

  19. Office | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data CenterFranconia, Virginia: Energy ResourcesLoading map...(UtilityCounty, Michigan: Energy Resources JumpBuildings used for general office

  20. E-Print Network 3.0 - atypical adherens junction Sample Search...

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    search results for: atypical adherens junction Page: << < 1 2 3 4 5 > >> 1 Molecular Biology of the Cell Vol. 12, 34653475, November 2001 Summary: and Is Required for Adherens...

  1. E-Print Network 3.0 - adherens junction formation Sample Search...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    search results for: adherens junction formation Page: << < 1 2 3 4 5 > >> 1 Molecular Biology of the Cell Vol. 12, 34653475, November 2001 Summary: and Is Required for Adherens...

  2. E-Print Network 3.0 - adherens junction integrity Sample Search...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    search results for: adherens junction integrity Page: << < 1 2 3 4 5 > >> 1 Molecular Biology of the Cell Vol. 12, 34653475, November 2001 Summary: suggest that DLG-1 might be...

  3. E-Print Network 3.0 - adherens junctions remain Sample Search...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    search results for: adherens junctions remain Page: << < 1 2 3 4 5 > >> 1 Molecular Biology of the Cell Vol. 12, 34653475, November 2001 Summary: and Is Required for Adherens...

  4. E-Print Network 3.0 - adherens junctions connect Sample Search...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    search results for: adherens junctions connect Page: << < 1 2 3 4 5 > >> 1 Molecular Biology of the Cell Vol. 12, 34653475, November 2001 Summary: and Is Required for Adherens...

  5. E-Print Network 3.0 - apical junction proteins Sample Search...

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    for: apical junction proteins Page: << < 1 2 3 4 5 > >> 1 MOLECULAR AND CELLULAR BIOLOGY, Jan. 2011, p. 8191 Vol. 31, No. 1 0270-73061112.00 doi:10.1128MCB.01001-10...

  6. A Microscopic Examination of the Josephson Junction

    E-Print Network [OSTI]

    Freericks, Jim

    A Microscopic Examination of the Josephson Junction J. K. Freericks, P. Miller, and M. Jarrell Review, 1999 #12;Introduction · The Josephson-Junction Computer · Maximize · Resistively Shunted Junction

  7. Macroscopic quantum tunneling in Josephson junctions -

    E-Print Network [OSTI]

    Gross, Rudolf

    Macroscopic quantum tunneling in Josephson junctions - a method to characterise a well-shielded low Theory 5 1. The classical theory of Josephson junctions . . . . . . . . . . . . . . . . . 9 1-Model . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 13 2. Josephson junction dynamics . . . . . . . . . . . . . . . . . . . . . . . . 15 2.1 The basics

  8. Nuclear Energy Page 570Page 570

    E-Print Network [OSTI]

    Nuclear Energy Page 570Page 570 #12;Energy Supply and Conservation/ Nuclear Energy FY 2007;Energy Supply and Conservation/Nuclear Energy/ Overview FY 2007 Congressional Budget Energy Supply and Conservation Office of Nuclear Energy, Science and Technology Overview Appropriation Summary by Program

  9. Apache Junction, Arizona: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of InspectorConcentrating SolarElectricEnergyCT Biomass Facility Jumpvolcanic

  10. White River Junction, Vermont: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of InspectorConcentrating SolarElectric Coop,SaveWhiskey Flats Geothermal Area Jump to:

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    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of Inspector GeneralDepartmentAUDITOhio (Utility Company)Galion, Ohio (UtilityGoldthwaite,Grafton CityGrand

  12. Princeton Site Office Jobs

    Office of Science (SC) Website

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  13. Fermilab | Directorate | Offices

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr MayAtmospheric Optical Depth7-1D: Vegetation ProposedUsing ZirconiaPolicyFeasibility ofSmall15.000 Rev. 0JosephOrganizationOffices Office

  14. Design of Flexible-Duct Junction Boxes | Department of Energy

    Energy Savers [EERE]

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  15. Office of Fossil Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion | Department ofT ib l L d F SSales LLC OrderEfficiencyOceanOctober FieldEnergy Office4 Jan

  16. Office of Fossil Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion | Department ofT ib l L d F SSales LLC OrderEfficiencyOceanOctober FieldEnergy Office4

  17. Office of Inspector General

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion | Department ofT ib l L d F SSales LLC OrderEfficiencyOceanOctober FieldEnergyOffice

  18. Office of Information Resources

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |EnergyonSupport0.pdf5 OPAMOCHCO Overview OCHCO Overview OCHCO T H TargetedFederalUSFormOffice

  19. The Ohio State University Office of Human Resources hr.osu.edu/policy Page 1 of 4 Drug-Free Workplace

    E-Print Network [OSTI]

    Howat, Ian M.

    . Applicants to specific safety-related and other designated positions at Ohio State will be drug tested after with safety-related and other designated positions as required by law and under individual agreements federal, state or local laws or regulations. Medical Review Officer (MRO) Physician officially designated

  20. Office of the Chief Human Capital Officer | Department of Energy

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |Energy UsageAUDITVehicles »Exchange VisitorsforDepartment ofNo FearOffice ofOffice of the

  1. Office of the Chief Information Officer | Department of Energy

    Energy Savers [EERE]

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  2. MEMORANDUM FOR CHIEF ACQUISITION OFFICERS

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of Inspector General Office0-72.pdfGeorgeDoesn't HappenLow-Cost Production Ex parte communications, U.S.1 TO:MA

  3. MEMORANDUM FOR CHIEF ACQUISITION OFFICERS

    Energy Savers [EERE]

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  4. Office Protocols | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  5. Josephson junction Q-spoiler

    DOE Patents [OSTI]

    Clarke, John (Berkeley, CA); Hilbert, Claude (Austin, TX); Hahn, Erwin L. (Berkeley, CA); Sleator, Tycho (Berkeley, CA)

    1988-01-01T23:59:59.000Z

    An automatic Q-spoiler comprising at least one Josephson tunnel junction connected in an LC circuit for flow of resonant current therethrough. When in use in a system for detecting the magnetic resonance of a gyromagnetic particle system, a high energy pulse of high frequency energy irradiating the particle system will cause the critical current through the Josephson tunnel junctions to be exceeded, causing the tunnel junctions to act as resistors and thereby damp the ringing of the high-Q detection circuit after the pulse. When the current has damped to below the critical current, the Josephson tunnel junctions revert to their zero-resistance state, restoring the Q of the detection circuit and enabling the low energy magnetic resonance signals to be detected.

  6. Josephson junction Q-spoiler

    DOE Patents [OSTI]

    Clarke, J.; Hilbert, C.; Hahn, E.L.; Sleator, T.

    1986-03-25T23:59:59.000Z

    An automatic Q-spoiler comprising at least one Josephson tunnel junction connected in an LC circuit for flow of resonant current therethrough. When in use in a system for detecting the magnetic resonance of a gyromagnetic particle system, a high energy pulse of high frequency energy irradiating the particle system will cause the critical current through the Josephson tunnel junctions to be exceeded, causing the tunnel junctions to act as resistors and thereby damp the ringing of the high-Q detection circuit after the pulse. When the current has damped to below the critical current, the Josephson tunnel junctions revert to their zero-resistance state, restoring the Q of the detection circuit and enabling the low energy magnetic resonance signals to be detected.

  7. Duality in Josephson Junction Arrays

    E-Print Network [OSTI]

    Ya. M. Blanter; Rosario Fazio; Gerd Schoen

    1997-01-30T23:59:59.000Z

    Various properties of mesoscopic two-dimensional Josephson junction arrays are reviewed. Particular attention is paid to structure of the topological excitations, charges and vortices, which are shown to be dual to each other. This duality persists in the presence of external magnetic fields and offset charges, which influence vortices and charges in an equivalent way. A double-layer junction array is also considered, where an even further reaching duality is discovered.

  8. Chief Medical Officer | Department of Energy

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |Energy UsageAUDITVehiclesTankless orAChief Medical Officer Chief Medical Officer Dr. Ardaiz

  9. National Nuclear Security Administration Kansas City Field Office

    National Nuclear Security Administration (NNSA)

    City Field Office 14520 Botts Road Kansas City, Missouri 64147 Kansas City Plant Related Web Pages Kansas City Plant Home Page - Provides background information and related news on...

  10. Electromagnetically Induced Transparency in a Double Well Atomic Josephson Junction

    E-Print Network [OSTI]

    Weatherall, J. O.; Search, C. P.

    2009-01-01T23:59:59.000Z

    observation of these Josephson junction resonances. 2.dressed Bose condensed Josephson junction Let us consider ain a Double Well Atomic Josephson Junction J.O. Weatherall

  11. Sample page | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of Inspector GeneralDepartmentAUDIT REPORTOpenWende New EnergyAnatolia JumpRiegotecSadoun Solar Sales

  12. Office of Legacy Management | Department of Energy

    Energy Savers [EERE]

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  13. Office of Nuclear Energy | Department of Energy

    Energy Savers [EERE]

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  14. Alexey Ustinov Two-level fluctuators in Josephson junctions Josephson junction as a tool to

    E-Print Network [OSTI]

    Fominov, Yakov

    Alexey Ustinov Two-level fluctuators in Josephson junctions Josephson junction as a tool;Alexey Ustinov Two-level fluctuators in Josephson junctions Outline JJ phase qubit Microwave spectroscopy. Ustinov. ArXiv:0909.3425 #12;Alexey Ustinov Two-level fluctuators in Josephson junctions Josephson tunnel

  15. Precision measurement with an optical Josephson junction

    E-Print Network [OSTI]

    H. T. Ng; K. Burnett; J. A. Dunningham

    2006-11-18T23:59:59.000Z

    We study a new type of Josephson device, the so-called "optical Josephson junction" as proposed in Phys. Rev. Lett. {\\bf 95}, 170402 (2005). Two condensates are optically coupled through a waveguide by a pair of Bragg beams. This optical Josephson junction is analogous to the usual Josephson junction of two condensates weakly coupled via tunneling. We discuss the use of this optical Josephson junction, for making precision measurements.

  16. Precision measurement with an optical Josephson junction

    SciTech Connect (OSTI)

    Ng, H. T.; Burnett, K. [Clarendon Laboratory, Department of Physics, University of Oxford, Parks Road, Oxford OX1 3PU (United Kingdom); Dunningham, J. A. [School of Physics and Astronomy, University of Leeds, LS2 9JT (United Kingdom)

    2007-06-15T23:59:59.000Z

    We present a theoretical study of a type of Josephson device, the so-called 'optical Josephson junction' [Y. Shin et al. Phys. Rev. Lett. 95, 170402 (2005).]. In this device, two condensates are optically coupled through a waveguide by a pair of Bragg beams. This optical Josephson junction differs from the usual Josephson junction where condensates are weakly coupled by tunneling through a barrier. We discuss the use of this optical Josephson junction, for making precision measurements.

  17. Dynamics of Josephson-junction ladders

    SciTech Connect (OSTI)

    Kim, J. (Department of Physics, Basic Science Research Institute, Pohang Institute of Science and Technology, Pohang P.O. Box 125, Kyungbuk 790-600 (Korea, Republic of) Division of Basic Science Research, Research Institute of Industrial Science and Technology, Pohang P.O. Box 135, Kyungbuk 790-600 (Korea, Republic of)); Choe, W.G.; Kim, S. (Department of Physics, Basic Science Research Institute, Pohang Institute of Science and Technology, Pohang P.O. Box 125, Kyungbuk 790-600 (Korea, Republic of)); Lee, H.J. (Department of Physics, Basic Science Research Institute, Pohang Institute of Science and Technology, Pohang P.O. Box 125, Kyungbuk 790-600 (Korea, Republic of) Division of Basic Science Research, Research Institute of Industrial Science and Technology, Pohang P.O. Box 135, Kyungbuk 790-600 (Korea, Republic of))

    1994-01-01T23:59:59.000Z

    We have numerically studied dynamical behaviors of Josephson-junction ladders consisting of [ital N][sub [ital p

  18. Campus Sustainability Office Campus Planning Office

    E-Print Network [OSTI]

    Caughman, John

    Campus Sustainability Office (CSO) Campus Planning Office (CPO) Campus Sustainability Manager (Molly Bressers) Campus Sustainability Office and Campus Planning Office September 2014 Student Employee

  19. Quantum effects in nanoscale Josephson junction circuits

    E-Print Network [OSTI]

    Haviland, David

    Quantum effects in nanoscale Josephson junction circuits SILVIA CORLEVI Doctoral Thesis Stockholm Josephson junction arrays with SQUID geometry. TRITA FYS 2006:31 ISSN 0280-316X ISRN KTH/FYS/­06:31­SE ISBN study on single-charge effects in nanoscale Josephson junctions and Cooper pair transistors (CPTs

  20. Ames Site Office Jobs

    Office of Science (SC) Website

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  1. Argonne Site Office Jobs

    Office of Science (SC) Website

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  2. OFFICE: NEPA REVIEWS:

    Office of Environmental Management (EM)

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  3. Oak Ridge Office

    Office of Environmental Management (EM)

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  4. Oak Ridge Office

    Office of Environmental Management (EM)

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  5. Oak Ridge Office

    Office of Environmental Management (EM)

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  6. Oak Ridge Office

    Office of Environmental Management (EM)

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  7. Oak Ridge Office

    Office of Environmental Management (EM)

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  8. Oak Ridge Office

    Office of Environmental Management (EM)

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  9. PRIVACY IMPACT ASSESSMENT: Office

    Office of Environmental Management (EM)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr May Jun Jul(Summary) "of Energy Power.pdf11-161-LNG |September 15, 2010Energy6 Frontera GenerationMedicine - AssistantOffice of

  10. PRIVACY IMPACT ASSESSMENT: Office

    Office of Environmental Management (EM)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr May Jun Jul(Summary) "of Energy Power.pdf11-161-LNG |September 15, 2010Energy6 Frontera GenerationMedicine - AssistantOffice

  11. Advanced Manufacturing Office Overview

    Broader source: Energy.gov (indexed) [DOE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr May Jun Jul(Summary) "ofEarly Career Scientists' ResearchThe Office ofReporting (Connecticut)41AdamEnergyAdvanced DOE Workshop:

  12. SLAC Site Office Jobs

    Office of Science (SC) Website

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  13. SSRL Safety Office Memo

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  14. Office of Communication - Staff

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  15. Office of Science

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  16. Education Office Housing

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr May Jun Jul(Summary)morphinanInformation Desert Southwest Region service area. TheEPSCI Home It is the missionEducation Office Housing

  17. Josephson-junction logic device

    SciTech Connect (OSTI)

    Suzuki, H.

    1987-12-01T23:59:59.000Z

    A Josephson-junction logic device having inductances and forming and AND circuit is described comprising: at least two superconductive loops, each having at least two Josephson-junction elements and a loop inductance connected between each of at least two Josephson-junction elements; at least two logic input signal lines, operatively connected to receive input currents, for supplying logic input signals; a bias line, operatively connected to at least two super conductive loops, for supplying a bias current to at least two superconductive loops, the bias current satisfying the condition vertical bar I/sub ml/ vertical bar > vertical bar I/sub mo/ vertical bar, where I/sub ml/ is a first threshold current, for switching the AND circuit, determined when at least two logic input signal lines receive different magnitude input currents and where I/sub mo/ is a second threshold current for switching the AND circuit, determined when at least two logic input signal lines receive the same magnitude input currents; and output terminals, operatively connected to one of at least two Josephson-junction elements, for outputting a logic output signal as a result of a logic operation performed on the logic input signals, whereby an operating margin of the AND circuit is expanded.

  18. Office of Information Technology Strategic Planning Process

    E-Print Network [OSTI]

    Liu, Paul

    Office of Information Technology Strategic Planning Process June 2012 Marc Hoit, Ph.D. Vice Strategic Planning Process June 2012 Page 2 Office of Information Technology Strategic Planning Process of Information Technology Strategic Planning Process #12;Office of Information Technology Strategic Planning

  19. CMTA Office

    High Performance Buildings Database

    Prospect, KY When CMTA outgrew their old office space, the consultant engineering company decided to construct a new building. Not only does the structure provide offices for the firm, it also showcases progressive design elements and allows the firm to test new technologies and demonstrate their effectiveness to clients. The new CMTA office building is located in a live-work development on the outskirts of Louisville, KY. The location was selected to place the office close to where the employees live.

  20. Graduate Hall Director Office of Residential Programs

    E-Print Network [OSTI]

    Hone, James

    Page 1 Graduate Hall Director Office of Residential Programs Housing Guidelines #12;Page 2 Graduate Hall Director for Residential Programs Guidelines for Residence This document is intended for the Office of Residential Programs Graduate Hall Directors (GHDs) who obtain housing on campus as part

  1. Method of manufacturing Josephson junction integrated circuits

    SciTech Connect (OSTI)

    Jillie Jr., D. W.; Smith, L. N.

    1985-02-12T23:59:59.000Z

    Josephson junction integrated circuits of the current injection type and magnetically controlled type utilize a superconductive layer that forms both Josephson junction electrode for the Josephson junction devices on the integrated circuit as well as a ground plane for the integrated circuit. Large area Josephson junctions are utilized for effecting contact to lower superconductive layers and islands are formed in superconductive layers to provide isolation between the groudplane function and the Josephson junction electrode function as well as to effect crossovers. A superconductor-barrier-superconductor trilayer patterned by local anodization is also utilized with additional layers formed thereover. Methods of manufacturing the embodiments of the invention are disclosed.

  2. 11/21/2006 01:20 PMThe Office of Science -Remarks on behalf of the United States Government Page 1 of 2http://www.sc.doe.gov/News_Information/News_Room/2006/ITER/RLO_Remarksfor_ITER_Signing_Ceremony.html

    E-Print Network [OSTI]

    11/21/2006 01:20 PMThe Office of Science - Remarks on behalf of the United States Government Page 1 Universities National Laboratories Scientific User Facilities Budget and Planning Grants and Contracts Project of the United States Government by Dr. Raymond Orbach Under Secretary for Science U.S. Department of Energy

  3. 2011 Annual Planning Summary for Office of River Protection (ORP) |

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustionImprovement Awardflash2007-42attachment1.pdfmodule(EE) | Department ofofofJunction (See LM

  4. 2011 Annual Planning Summary for Princeton Site Office (PSO) | Department

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustionImprovement Awardflash2007-42attachment1.pdfmodule(EE) | Department ofofofJunction (See LMof

  5. 2011 Annual Planning Summary for Richland Operations Office (RL) |

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustionImprovement Awardflash2007-42attachment1.pdfmodule(EE) | Department ofofofJunction (See

  6. Office of Environmental Management Perspective

    Office of Environmental Management (EM)

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  7. Pacific Northwest Site Office Jobs

    Office of Science (SC) Website

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  8. Office of Secure Transportation Activities

    Office of Environmental Management (EM)

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  9. Office of the Chief Financial Officer | Department of Energy

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |Energy UsageAUDITVehicles »Exchange VisitorsforDepartment ofNo FearOffice of

  10. OBSERVATION OF ZERO POINT FLUCTUATIONS IN A RESISTIVELY SHUNTED JOSEPHSON TUNNEL JUNCTION

    E-Print Network [OSTI]

    Koch, Roger H.

    2012-01-01T23:59:59.000Z

    resistively shunted Josephson junctions in which quantumresistively shunted Josephson junction. For measurementresistively shunted Josephson junction in the quantum limit.

  11. Josephson junctions and dark energy

    E-Print Network [OSTI]

    Philippe Jetzer; Norbert Straumann

    2006-04-25T23:59:59.000Z

    In a recent paper Beck and Mackey [astro-ph/0603397] argue that the argument we gave in our paper [Phys. Lett. B 606, 77 (2005)] to disprove their claim that dark energy can be discovered in the Lab through noise measurements of Josephson junctions is incorrect. In particular, they emphasize that the measured noise spectrum in Josephson junctions is a consequence of the fluctuation dissipation theorem, while our argument was based on equilibrium statistical mechanics. In this note we show that the fluctuation dissipation relation does not depend upon any shift of vacuum (zero-point) energies, and therefore, as already concluded in our previous paper, dark energy has nothing to do with the proposed measurements.

  12. PAGE OF PAGES

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  13. Office of Executive Resources Office of the Chief Human Capital Officer

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  14. Office of Executive Resources Office of the Chief Human Capital Officer

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  15. Create Page | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of Inspector GeneralDepartmentAUDIT REPORT Americium/CuriumSunways JVGroupChoiceCoronation Power JumpCreate Page

  16. Full page fax print

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  17. Full page fax print

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  18. Full page photo

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    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr MayAtmospheric Optical Depth7-1D: Vegetation ProposedUsing ZirconiaPolicyFeasibilityFieldMinds"OfficeTourFrom3,:A Storage Outlook

  19. Full page photo print

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr MayAtmospheric Optical Depth7-1D: Vegetation ProposedUsing ZirconiaPolicyFeasibilityFieldMinds"OfficeTourFrom3,:A Storage Outlook

  20. RF Group Home Page

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  1. RMOTC - Articles - Page 2

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  2. RMOTC - Articles - Page 3

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  3. DOE NEPA Compliance Officers

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    NEPA Compliance Officers NEPA Compliance Officers are listed first for Program Offices, then Power Marketing Administrations, then Field Offices. Please send updates to...

  4. Export pages to RDF | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of InspectorConcentrating Solar Power Basics (TheEtelligence (Smart Grid Project)Company (Pennsylvania)pages to

  5. Microwave photonics with Josephson junction arrays

    E-Print Network [OSTI]

    Zueco, David; Solano, Enrique; Garca-Ripoll, Juan Jos

    2011-01-01T23:59:59.000Z

    We introduce an architecture for a photonic crystal in the microwave regime based on superconducting transmission lines interrupted by Josephson junctions. A study of the scattering properties of a single junction in the line shows that the junction behaves as a perfect mirror when the photon frequency matches the Josephson plasma frequency. We generalize our calculations to periodic arrangements of junctions, demonstrating that they can be used for tunable band engineering, forming what we call a quantum circuit crystal. As a relevant application, we discuss the creation of stationary entanglement between two superconducting qubits interacting through a disordered media.

  6. Holographic p-wave Josephson junction

    E-Print Network [OSTI]

    Wang, Yong-Qiang; Zhao, Zhen-Hua

    2011-01-01T23:59:59.000Z

    In this work we generalized holographic model for s-wave DC Josephson junction constructed in arXiv:1101.3326[hep-th] to a holographic description for p-wave Josephson junction. By solving numerically the coupled equations of motion of Yang-Mills theory for a non-Abelian SU(2) gauge fields in (3+1)-dimensional AdS spacetimes, we shown that DC current of the p-wave Josephson junction is proportional to the sine of the phase difference across the junction like the s-wave case.

  7. Holographic p-wave Josephson junction

    E-Print Network [OSTI]

    Yong-Qiang Wang; Yu-Xiao Liu; Zhen-Hua Zhao

    2011-09-20T23:59:59.000Z

    In this work we generalized holographic model for s-wave DC Josephson junction constructed in arXiv:1101.3326[hep-th] to a holographic description for p-wave Josephson junction. By solving numerically the coupled equations of motion of Yang-Mills theory for a non-Abelian SU(2) gauge fields in (3+1)-dimensional AdS spacetimes, we shown that DC current of the p-wave Josephson junction is proportional to the sine of the phase difference across the junction like the s-wave case.

  8. Texas General Land Office | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of InspectorConcentrating SolarElectric Coop, Inc Place:Innovation & SolutionsKentucky)

  9. Advanced Manufacturing Office | Department of Energy

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |Energy UsageAUDITVehiclesTankless orA BRIEF HISTORY OFEnergyAdvanced Manufacturing Office

  10. Bioenergy Technologies Office April Monthly News Blast

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious Rank EERE:Year in Review: Top Five EEREDepartmentFebruary 4, 2014 Bioenergy Technologies OfficeApril 2014

  11. Bioenergy Technologies Office Coloring and Activity Book

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  12. Vehicle Technologies Office: Batteries | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious Rank EERE: Alternative Fuels DataCombinedDepartment ofCareers »Batteries Vehicle Technologies Office:

  13. Bioenergy Technologies Office Overview | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  14. Bioenergy Technologies Office Solicitations | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  15. LM-04-XXXX Office of Legacy Management

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  16. Burley Field Office | Open Energy Information

    Open Energy Info (EERE)

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  17. Category:MediumOffice | Open Energy Information

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  18. Colorado Energy Office | Open Energy Information

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  19. DOE Geothermal Technologies Office | Open Energy Information

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  20. DOE Golden Field Office | Open Energy Information

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  1. BLM Arctic Field Office | Open Energy Information

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  13. Sustainability Performance Office | Department of Energy

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  14. MA - Office of Management - Energy Conservation Plan

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  15. Vehicle Technologies Office: Transitioning the Transportation Sector -

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  16. Office of Fossil Energy | Department of Energy

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  17. Office of International Affairs | Department of Energy

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  18. Office of Management | Department of Energy

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  19. BLM Elko District Office | Open Energy Information

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  20. Office of Administrative Management and Support

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  1. BLM Ukiah Field Office | Open Energy Information

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  2. BLM Washington Office | Open Energy Information

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  3. BLM Wyoming State Office | Open Energy Information

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  4. SITE OFFICE PERSPECTIVE | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  5. Method for shallow junction formation

    DOE Patents [OSTI]

    Weiner, Kurt H. (San Jose, CA)

    1996-01-01T23:59:59.000Z

    A doping sequence that reduces the cost and complexity of forming source/drain regions in complementary metal oxide silicon (CMOS) integrated circuit technologies. The process combines the use of patterned excimer laser annealing, dopant-saturated spin-on glass, silicide contact structures and interference effects creates by thin dielectric layers to produce source and drain junctions that are ultrashallow in depth but exhibit low sheet and contact resistance. The process utilizes no photolithography and can be achieved without the use of expensive vacuum equipment. The process margins are wide, and yield loss due to contact of the ultrashallow dopants is eliminated.

  6. Method for shallow junction formation

    DOE Patents [OSTI]

    Weiner, K.H.

    1996-10-29T23:59:59.000Z

    A doping sequence is disclosed that reduces the cost and complexity of forming source/drain regions in complementary metal oxide silicon (CMOS) integrated circuit technologies. The process combines the use of patterned excimer laser annealing, dopant-saturated spin-on glass, silicide contact structures and interference effects creates by thin dielectric layers to produce source and drain junctions that are ultrashallow in depth but exhibit low sheet and contact resistance. The process utilizes no photolithography and can be achieved without the use of expensive vacuum equipment. The process margins are wide, and yield loss due to contact of the ultrashallow dopants is eliminated. 8 figs.

  7. Office of Indian Energy Policy and Programs | Department of Energy

    Energy Savers [EERE]

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  8. Josephson junction between anisotropic superconductors Roman G. Mints

    E-Print Network [OSTI]

    Mints, Roman G.

    Josephson junction between anisotropic superconductors Roman G. Mints School of Physics 50011 Received 1 February 1999 Sin-Gordon equation for Josephson junctions with arbitrary misaligned, the contacts have Josephson properties. Hence, physical charac- teristics of Josephson junctions

  9. Superconducting Tunnel Junctions as Direct Detectors for Submillimeter Astronomy

    E-Print Network [OSTI]

    Superconducting Tunnel Junctions as Direct Detectors for Submillimeter Astronomy A Dissertation 2008 by John Daniel Teufel. All rights reserved. #12;Abstract Superconducting Tunnel Junctions on the of performance of superconducting tunnel junctions (STJ) as direct detectors for submillimeter radiation. Over

  10. Office of Public Affairs | The Ames Laboratory

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

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  11. Office of Research Opportunity | The Ames Laboratory

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

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  12. Office of the Director | The Ames Laboratory

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  13. Dark energy and Josephson junctions

    SciTech Connect (OSTI)

    Branchina, Vincenzo [Department of Physics, University of Catania, Via Santa Sofia 64, I-95123, Catania (Italy); Liberto, Marco Di; Lodato, Ivano, E-mail: vincenzo.branchina@ct.infn.it, E-mail: madiliberto@ssc.unict.it, E-mail: ivlodato@ssc.unict.it [Scuola Superiore di Catania, Via S. Nullo 5/i, Catania (Italy)

    2009-08-01T23:59:59.000Z

    It has been recently claimed that dark energy can be (and has been) observed in laboratory experiments by measuring the power spectrum S{sub I}(?) of the noise current in a resistively shunted Josephson junction and that in new dedicated experiments, which will soon test a higher frequency range, S{sub I}(?) should show a deviation from the linear rising observed in the lower frequency region because higher frequencies should not contribute to dark energy. Based on previous work on theoretical aspects of the fluctuation-dissipation theorem, we carefully investigate these issues and show that these claims are based on a misunderstanding of the physical origin of the spectral function S{sub I}(?). According to our analysis, dark energy has never been (and will never be) observed in Josephson junctions experiments. We also predict that no deviation from the linear rising behavior of S{sub I}(?) will be observed in forthcoming experiments. Our findings provide new (we believe definite) arguments which strongly support previous criticisms.

  14. Quantum Junction Solar Cells Jiang Tang,,

    E-Print Network [OSTI]

    Quantum Junction Solar Cells Jiang Tang,, Huan Liu,, David Zhitomirsky, Sjoerd Hoogland, Xihua, 1037 Luoyu Road, Wuhan, Hubei 430074, China Department of Electrical and Computer Engineering-type and p-type materials to create the first quantum junction solar cells. We present a family

  15. Executive Officer

    Broader source: Energy.gov [DOE]

    THIS VACANCY ANNOUNCEMENT HAS BEEN MODIFIED TO EXTEND THE CLOSING DATE. A successful candidate in this position will serve as the Executive Officer to the Administrator of the Bonneville Power...

  16. Monitoring of the Airport Calibration Pads at Walker Field, Grand Junction,

    Energy Savers [EERE]

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  17. Solar Junction | Open Energy Information

    Open Energy Info (EERE)

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  18. Office of Chief Financial Officer

    Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

    2001-01-19T23:59:59.000Z

    This Order implements the provisions of the Chief Financial Officers Act of 1990 within the Department of Energy. Cancels SEN 34-91. Canceled by DOE O 520.1A.

  19. Template:RecipePage | Open Energy Information

    Open Energy Info (EERE)

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  20. Help:Special pages | Open Energy Information

    Open Energy Info (EERE)

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  1. Help:Deleting pages | Open Energy Information

    Open Energy Info (EERE)

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  2. DOE - Office of Legacy Management -- GJO

    Office of Legacy Management (LM)

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  3. DOE - Office of Legacy Management -- GJO

    Office of Legacy Management (LM)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr May Jun Jul(Summary) "ofEarlyEnergyDepartment ofDepartment ofof EnergyYou$0.C. 20545*. . : '* FEB 1972. : . ..Junction

  4. Office of Chief Financial Officer

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion | Department ofT ib l L d F SSales LLC OrderEfficiencyOceanOctober XX,/2012 1 Fifty years of 1

  5. Medical Examination Office of Human Resources

    E-Print Network [OSTI]

    Howat, Ian M.

    Medical Examination 4.40 Office of Human Resources Applies to: Faculty, staff, graduate associates, student employees, and applicants The Ohio State University Office of Human Resources Page 1 of 1 Policy 4.40 medical Examination Resources Edited 12/10/13 Resources for Policy 4.40 Drug-Free Workplace, Policy 7

  6. MEMORANDUM FOR THE DIRECTOR, OFFICE OF MANAGEMENT, BUDGET AND EVALUATION/CHIEF FINANCIAL OFFICER

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  7. delta-biased Josephson tunnel junctions

    SciTech Connect (OSTI)

    Monaco, R.; Mygind, J.; Koshelets, V. P.; Dmitriev, P. [Istituto di Cibernetica del CNR, 80078 Pozzuoli (Italy) and Dipartimento di Fisica, Universita di Salerno, 84081 Baronissi (Italy); DTU Physics, Technical University of Denmark, B309, DK-2800 Lyngby (Denmark); Institute of Radio Engineering and Electronics, Russian Academy of Science, Mokhovaya 11, Bldg. 7, 125009 Moscow (Russian Federation)

    2010-02-01T23:59:59.000Z

    The behavior of a long Josephson tunnel junction drastically depends on the distribution of the dc bias current. We investigate the case in which the bias current is fed in the central point of a one-dimensional junction. Such junction configuration has been recently used to detect the persistent currents circulating in a superconducting loop. Analytical and numerical results indicate that the presence of fractional vortices leads to remarkable differences from the conventional case of uniformly distributed dc bias current. The theoretical findings are supported by detailed measurements on a number of delta-biased samples having different electrical and geometrical parameters.

  8. WNR Offices

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

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  9. Tuning a short coherence length Josephson junction through a

    E-Print Network [OSTI]

    Freericks, Jim

    Tuning a short coherence length Josephson junction through a metal-insulator transition J. K University, Josephson Junction talk, 2001 #12;Josephson Tunnel Junctions · A Superconductor maintaining nonhysteretic behavior. J. K. Freericks, Georgetown University, Josephson Junction talk, 2001 S N

  10. THE USE OF SUPERCONDUCTING JUNCTIONS IN MAGNETOMETRY By J. CLARKE,

    E-Print Network [OSTI]

    Boyer, Edmond

    -8 gauss. In the second part, we discuss the properties of a type of Josephson junction in which] junctions in parallel. A Josephson junction consists of two superconductors separated by an insulating =|03C8|ei~, where 1 03C8|2 represents the density of condensed pairs. In a Josephson junction

  11. JOSEPHSON JUNCTION MIXER USING AN EXTERNAL LOCAL OSCILLATOR (*)

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    255 JOSEPHSON JUNCTION MIXER USING AN EXTERNAL LOCAL OSCILLATOR (*) H. KANTER Electronic Research, studied the use of Josephson junctions as microwave mixers on the basis of the highly damped junction indicate that conversion as well as noise properties of Josephson junctions require more detailed studies

  12. Tunnel junction multiple wavelength light-emitting diodes

    DOE Patents [OSTI]

    Olson, J.M.; Kurtz, S.R.

    1992-11-24T23:59:59.000Z

    A multiple wavelength LED having a monolithic cascade cell structure comprising at least two p-n junctions, wherein each of said at least two p-n junctions have substantially different band gaps, and electrical connector means by which said at least two p-n junctions may be collectively energized; and wherein said diode comprises a tunnel junction or interconnect. 5 figs.

  13. Tunnel junction multiple wavelength light-emitting diodes

    DOE Patents [OSTI]

    Olson, Jerry M. (Lakewood, CO); Kurtz, Sarah R. (Golden, CO)

    1992-01-01T23:59:59.000Z

    A multiple wavelength LED having a monolithic cascade cell structure comprising at least two p-n junctions, wherein each of said at least two p-n junctions have substantially different band gaps, and electrical connector means by which said at least two p-n junctions may be collectively energized; and wherein said diode comprises a tunnel junction or interconnect.

  14. Self-consistent modeling of charge redistributions in Josephson junctions

    E-Print Network [OSTI]

    Freericks, Jim

    Self-consistent modeling of charge redistributions in Josephson junctions J. K. Freericks, Josephson Junction talk, 2000 #12;Josephson Proximity-Effect Junctions · A Superconductor-Normal metal, Georgetown University, Josephson Junction talk, 2000 S N S I I V V Ic #12;Andreev Bound States · At an N

  15. Superconductor-Correlated metal-Superconductor Josephson junctions

    E-Print Network [OSTI]

    Freericks, Jim

    Superconductor-Correlated metal- Superconductor Josephson junctions for high-speed digital. Freericks, Georgetown University, Josephson Junction talk, 2002 #12;Josephson Tunnel Junctions). J. K. Freericks, Georgetown University, Josephson Junction talk, 2002 S I S I I V V Ic #12

  16. Self-consistent modeling of SINIS and SNSNS Josephson junctions

    E-Print Network [OSTI]

    Freericks, Jim

    Self-consistent modeling of SINIS and SNSNS Josephson junctions J. K. Freericks Collaborators: Paul of Naval Research. J. K. Freericks, Georgetown University, Josephson Junction talk, 2000 #12;Josephson University, Josephson Junction talk, 2000 S I S I I V V Ic #12;Josephson Proximity-Effect Junctions

  17. Office of Indian Energy Policy and Programs | Department of Energy

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |Energy UsageAUDITVehicles »Exchange VisitorsforDepartment ofNo Fear ActOffice ofOfficeOffice

  18. Office of NEPA Policy and Compliance | Department of Energy

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |Energy UsageAUDITVehicles »Exchange VisitorsforDepartment ofNo Fear ActOfficeOfficeOffice of

  19. Office of the General Counsel | Department of Energy

    Energy Savers [EERE]

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  20. Field Offices | U.S. DOE Office of Science (SC)

    Office of Science (SC) Website

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  1. Office of the Chief Human Capital Officer | Department of Energy

    Broader source: All U.S. Department of Energy (DOE) Office Webpages

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  2. Optoelectronic switching of addressable molecular crossbar junctions

    E-Print Network [OSTI]

    J. C. Li

    2006-11-22T23:59:59.000Z

    This letter reports on the observation of optoelectronic switching in addressable molecular crossbar junctions fabricated using polymer stamp-printing method. The active medium in the junction is a molecular self-assembled monolayer softly sandwiched between gold electrodes. The molecular junctions are investigated through currentvoltage measurements at varied temperature (from 95 to 300 K) in high vacuum condition. The junctions show reversible optoelectronic switching with the highest on/off ratio of 3 orders of magnitude at 95 K. The switching behavior is independent of both optical wavelength and molecular structure, while it strongly depends on the temperature. Initial analysis indicates that the distinct binding nature of the molecule/electrode interfaces play a dominant role in the switching performance.

  3. Fermilab | Directorate | Program Planning Office

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  4. Office of Communication - Speakers' Bureau

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  5. Office of Energy Project Management

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  6. Office of Research & Development

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  7. Ombuds Office Location & Hours

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  8. Final Meeting Summary Page 1

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  9. Quantum Coherence in a Superfluid Josephson Junction

    SciTech Connect (OSTI)

    Narayana, Supradeep; Sato, Yuki [Rowland Institute at Harvard, Harvard University, Cambridge, Massachusetts 02142 (United States)

    2011-02-04T23:59:59.000Z

    We report a new kind of experiment in which we take an array of nanoscale apertures that form a superfluid {sup 4}He Josephson junction and apply quantum phase gradients directly along the array. We observe collective coherent behaviors from aperture elements, leading to quantum interference. Connections to superconducting and Bose-Einstein condensate Josephson junctions as well as phase coherence among the superfluid aperture array are discussed.

  10. Office of Chief Financial Officer

    Office of Environmental Management (EM)

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  11. Office of Chief Financial Officer

    Broader source: Energy.gov (indexed) [DOE]

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  12. U.S. Department of Energy at Grand Junction 2003 Annual Inspection⎯Monticello, Utah

    Office of Legacy Management (LM)

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  13. Multi-junction solar cell device

    DOE Patents [OSTI]

    Friedman, Daniel J. (Lakewood, CO); Geisz, John F. (Wheat Ridge, CO)

    2007-12-18T23:59:59.000Z

    A multi-junction solar cell device (10) is provided. The multi-junction solar cell device (10) comprises either two or three active solar cells connected in series in a monolithic structure. The multi-junction device (10) comprises a bottom active cell (20) having a single-crystal silicon substrate base and an emitter layer (23). The multi-junction device (10) further comprises one or two subsequent active cells each having a base layer (32) and an emitter layer (23) with interconnecting tunnel junctions between each active cell. At least one layer that forms each of the top and middle active cells is composed of a single-crystal III-V semiconductor alloy that is substantially lattice-matched to the silicon substrate (22). The polarity of the active p-n junction cells is either p-on-n or n-on-p. The present invention further includes a method for substantially lattice matching single-crystal III-V semiconductor layers with the silicon substrate (22) by including boron and/or nitrogen in the chemical structure of these layers.

  14. The Rockefeller University Office of Technology Transfer 502 Founders Hall

    E-Print Network [OSTI]

    The Rockefeller University Office of Technology Transfer 502 Founders Hall 1230 York Avenue New://newswire.rockefeller.edu/?page=engine&id=939 Nidhi Sabharwal, Ph.D. Technology Manager Office of Technology Transfer (212) 327-7092 nsabharwal@rockefeller.edu #12;The Rockefeller University Office of Technology Transfer 502 Founders Hall 1230 York Avenue New

  15. Chief Financial Officer, Oak Ridge Office

    Broader source: Energy.gov [DOE]

    A successful candidate in this position will serve as the Chief Financial Officer, Oak Ridge Office, providing overall executive leadership for financial management, budgeting, contractor...

  16. Office Buildings

    U.S. Energy Information Administration (EIA) Indexed Site

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  17. Privacy Office

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  19. Operations Office

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  20. Badge Office

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  1. Director's Office

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

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  2. 2011 Annual Planning Summary for Sandia Site Office (SSO) | Department of

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustionImprovement Awardflash2007-42attachment1.pdfmodule(EE) | Department ofofofJunction

  3. Thermodynamic Signatures of Half-Quantum Vortices in p+ip Josephson Junction Arrays

    E-Print Network [OSTI]

    Krahn, Graham Joel

    2012-01-01T23:59:59.000Z

    bind a Majorana Fermion . . 3 Josephson Junction Arrays 3.14 p + ip Josephson Junction Arrays 4.1Bind a Majorana Fermion . . . . . . . . . Josephson Junction

  4. Temporal stability of Y Ba Cu O nano Josephson junctions from ion irradiation

    E-Print Network [OSTI]

    Cybart, Shane A.

    2014-01-01T23:59:59.000Z

    planar high temperature Josephson junctions fabricated usingYBa 2 Cu 3 O 7-? Josephson junctions via nanolithography andsuperconductor Josephson junctions, J. Vac. Sci. Technol.

  5. Office of Chief Financial Officer

    Broader source: Energy.gov (indexed) [DOE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr May Jun Jul(Summary) "of EnergyEnergyENERGYWomen OwnedofDepartment ofJaredOakscience-based,OHAGas and OilDepartment of3

  6. Office of Chief Financial Officer

    Broader source: Energy.gov (indexed) [DOE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr May Jun Jul(Summary) "of EnergyEnergyENERGYWomen OwnedofDepartment ofJaredOakscience-based,OHAGas and OilDepartment of36

  7. Office of Chief Financial Officer

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    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr MayAtmosphericNuclear Security Administration the1 - September 2006 The 2002 Wholesale Power Rate Schedules (base rates)Department3641

  8. Office of Chief Financial Officer

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  9. Office of Chief Financial Officer

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  10. Office of Chief Financial Officer

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    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE:1 First Use of Energy for All Purposes (Fuel and Nonfuel),Feet) Year Jan Feb Mar Apr MayAtmosphericNuclear Security Administration the1 - September 2006 The 2002 Wholesale Power Rate Schedules (base4 DOE/CF-0110 Volume 4

  11. Office of Chief Financial Officer

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  12. Office of Chief Financial Officer

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  13. Office Energy Checklist | Department of Energy

    Office of Environmental Management (EM)

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  14. Office of Communication - Talk to Fermilab

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  16. Office of Congressional and Intergovernmental Affairs

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  17. -Urban fisheries (page 7) -Bison & seed dispersal ( page 9)

    E-Print Network [OSTI]

    Koford, Rolf R.

    a common business model for NREM and Entomology. What is the business model? Well, I hope that you will see office procedures and departmental resources more efficiently by combining strengths of both departments for a Sustainable Energy Future (page 3) Field Notes Iowa State University Department of Natural Resource Ecology

  18. Page 1

    Broader source: Energy.gov (indexed) [DOE]

    In the fall of 2011 the Department of Energy Oak Ridge Office of Environ- mental Management released its much- anticipated plan regarding historic preservation of the K-25 Building...

  19. A Look at Office Buildings - Index

    Gasoline and Diesel Fuel Update (EIA)

    professional offices, and administrative offices. For example, an office may be a computer center, bank, consultant's office, law office, or medical office. An office building...

  20. Page comments

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  1. Smart Office Energy Solutions | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of InspectorConcentrating Solar PowerstoriesNrelPartnerTypePonsa, Mallorca:upGuidebook Jump to:SmarrMeters

  2. Office of Environmental Management | Department of Energy

    Energy Savers [EERE]

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  3. Office of Technology Transitions | Department of Energy

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |Energy UsageAUDITVehicles »Exchange VisitorsforDepartment ofNo FearOffice of Technology

  4. Office Technology RD&D Plan

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  5. Office of Small and Disadvantaged Business Utilization

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  6. The Office of Fossil Energy's (FE) Clean

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  7. Office of the Ombudsman | Department of Energy

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  15. Decoherence in a Josephson junction qubit

    E-Print Network [OSTI]

    A. J. Berkley; H. Xu; M. A. Gubrud; R. C. Ramos; J. R. Anderson; C. J. Lobb; F. C. Wellstood

    2003-03-01T23:59:59.000Z

    The zero-voltage state of a Josephson junction biased with constant current consists of a set of metastable quantum energy levels. We probe the spacings of these levels by using microwave spectroscopy to enhance the escape rate to the voltage state. The widths of the resonances give a measurement of the coherence time of the two states involved in the transitions. We observe a decoherence time shorter than that expected from dissipation alone in resonantly isolated 20 um x 5 um Al/AlOx/Al junctions at 60 mK. The data is well fit by a model including dephasing effects of both low-frequency current noise and the escape rate to the continuum voltage states. We discuss implications for quantum computation using current-biased Josephson junction qubits, including the minimum number of levels needed in the well to obtain an acceptable error limit per gate.

  16. Junction-side illuminated silicon detector arrays

    DOE Patents [OSTI]

    Iwanczyk, Jan S.; Patt, Bradley E.; Tull, Carolyn

    2004-03-30T23:59:59.000Z

    A junction-side illuminated detector array of pixelated detectors is constructed on a silicon wafer. A junction contact on the front-side may cover the whole detector array, and may be used as an entrance window for light, x-ray, gamma ray and/or other particles. The back-side has an array of individual ohmic contact pixels. Each of the ohmic contact pixels on the back-side may be surrounded by a grid or a ring of junction separation implants. Effective pixel size may be changed by separately biasing different sections of the grid. A scintillator may be coupled directly to the entrance window while readout electronics may be coupled directly to the ohmic contact pixels. The detector array may be used as a radiation hardened detector for high-energy physics research or as avalanche imaging arrays.

  17. Numerical Investigation of Josephson Junction Structures

    SciTech Connect (OSTI)

    Hristov, I.; Dimova, S.; Boyadjiev, T. [Faculty of Mathematics and Informatics, Sofia University 5 James Bourchier Blvd., 1164 Sofia (Bulgaria)

    2009-10-29T23:59:59.000Z

    Multilayered long Josephson Junction Structures form an interesting physical system where both nonlinearity and interaction between subsystems play an important role. Such systems allow to study physical effects that do not occur in single Josephson junction.The Sakai-Bodin-Pedersen model--a system of perturbed sine-Gordon equations--is used to study the dynamic states of stacks of inductively coupled long Josephson Junctions (LJJs). The corresponding static problem is numerically investigated as well. In order to study the stability of possible static solutions a Sturm-Liouville problem is generated and solved.The transitions from static to dynamic state and the scenario of these transitions are analyzed depending on the model parameters. Different physical characteristics--current-voltage characteristics, individual instant voltages and internal magnetic fields, are calculated and interpreted.

  18. Help:User page | Open Energy Information

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  1. Dynamical properties of high-temperature-superconductor granular bridge junctions: Inhomogeneous Josephson-junction-array model

    SciTech Connect (OSTI)

    Lee, J.; Lee, S.; Yu, J.; Park, G. [Department of Physics, Sogang University, Seoul 121-742 (Korea)] [Department of Physics, Sogang University, Seoul 121-742 (Korea)

    1996-02-01T23:59:59.000Z

    As an attempt to understand the dynamical behavior of the high-temperature-superconductor (HTSC) granular bridge junction, we model the granular HTSC bridge junction consisting of many small grains inside by an inhomogeneous Josephson junction array, i.e., randomly arranged Josephson junction arrays (JJA). To describe randomly distributed critical currents between the grains inside the HTSC granular bridge junction, we chose various possible configurations in {l_brace}{ital I}{sub {ital ij}}{sup {ital c}}{r_brace} and {l_brace}{ital R}{sub {ital ij}}{r_brace} for the one-dimensional (1D) and 2D inhomogeneous Josephson junctions, and calculated the current-voltage ({ital IV}) characteristics and self-radiation spectral densities of the 1D and 2D inhomogeneous Josephson junctions. As a result, depending upon the distribution of critical currents and shunted resistances, it is found that there are large variations of {ital IV} characteristics. In contrast to the appearance of giant Shapiro steps in the regular ordered array, such Shapiro steps disappear in the case of the disordered JJA due to the increased randomness in the distribution of critical currents. On the contrary, however, when there exists a correlation between critical currents and resistances, i.e., a constant Josephson voltage, {ital I}{sub {ital ij}}{sup {ital c}}{ital R}{sub {ital ij}}={ital V}{sub {ital J}} (constant), the fundamental Shapiro step emerges despite the disordered distribution of {ital I}{sub {ital ij}}{sup {ital c}}. The relevance of this model to the HTSC granular bridge junctions is discussed. In particular, experimentally observed dynamical behaviors of the HTSC granular bridge junctions are shown to be closely related to the case of the correlated distribution with constant Josephson voltage. {copyright} {ital 1996 The American Physical Society.}

  2. Complementary junction heterostructure field-effect transistor

    DOE Patents [OSTI]

    Baca, Albert G. (Albuquerque, NM); Drummond, Timothy J. (Albuquerque, NM); Robertson, Perry J. (Albuquerque, NM); Zipperian, Thomas E. (Albuquerque, NM)

    1995-01-01T23:59:59.000Z

    A complimentary pair of compound semiconductor junction heterostructure field-effect transistors and a method for their manufacture are disclosed. The p-channel junction heterostructure field-effect transistor uses a strained layer to split the degeneracy of the valence band for a greatly improved hole mobility and speed. The n-channel device is formed by a compatible process after removing the strained layer. In this manner, both types of transistors may be independently optimized. Ion implantation is used to form the transistor active and isolation regions for both types of complimentary devices. The invention has uses for the development of low power, high-speed digital integrated circuits.

  3. Axion physics in a Josephson junction environment

    E-Print Network [OSTI]

    Christian Beck

    2011-11-23T23:59:59.000Z

    We show that recent experiments based on Josephson junctions, SQUIDS, and coupled Josephson qubits have a cosmological interpretation in terms of axionic dark matter physics, in the sense that they allow for analogue simulation of early-universe axion physics. We propose new experimental setups in which SQUID-like axionic interactions in a resonant Josephson junction environment can be tested, similar in nature to recent experiments that test for quantum entanglement of two coupled Josephson qubits. We point out that the parameter values relevant for early-universe axion cosmology are accessible with present day's achievements in nanotechnology.

  4. Complementary junction heterostructure field-effect transistor

    DOE Patents [OSTI]

    Baca, A.G.; Drummond, T.J.; Robertson, P.J.; Zipperian, T.E.

    1995-12-26T23:59:59.000Z

    A complimentary pair of compound semiconductor junction heterostructure field-effect transistors and a method for their manufacture are disclosed. The p-channel junction heterostructure field-effect transistor uses a strained layer to split the degeneracy of the valence band for a greatly improved hole mobility and speed. The n-channel device is formed by a compatible process after removing the strained layer. In this manner, both types of transistors may be independently optimized. Ion implantation is used to form the transistor active and isolation regions for both types of complimentary devices. The invention has uses for the development of low power, high-speed digital integrated circuits. 10 figs.

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  1. Final Meeting Summary Page 1

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  14. Final Meeting Summary Page 1

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  15. Final Meeting Summary Page 1

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  17. Final Meeting Summary Page 1

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  20. Final Meeting Summary Page 1

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  1. Office of Personnel Management (OPM) Billing System PIA, Office...

    Office of Environmental Management (EM)

    Office of Personnel Management (OPM) Billing System PIA, Office of Health, Safety and Security Office of Personnel Management (OPM) Billing System PIA, Office of Health, Safety and...

  2. Help:Starting a new page | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of Inspector GeneralDepartmentAUDIT REPORTOpen EnergyBoard"Starting a new page Jump to: navigation, search

  3. Phase Transition in Compact QED(3) and the Josephson Junction

    E-Print Network [OSTI]

    Vakif K. Onemli; Murat Tas; Bayram Tekin

    2001-08-22T23:59:59.000Z

    We study the finite temperature phase transition in 2+1 dimensional compact QED and its dual theory: Josephson junction. Duality of these theories at zero temperature was established long time ago by Hosotani. Phase transition in compact QED is well studied and we employ the `duality' to study the superconductivity phase transition in a Josephson junction. For a thick junction we obtain a critical temperature in terms of the geometrical properties of the junction.

  4. Holographic Josephson Junction in 3+1 dimensions

    E-Print Network [OSTI]

    Yong-Qiang Wang; Yu-Xiao Liu; Zhen-Hua Zhao

    2011-04-21T23:59:59.000Z

    In arXiv:1101.3326[hep-th], a (2+1)-dimensional holographic Josephson junction was constructed, and it was shown that the DC Josephson current is proportional to the sine of the phase difference across the junction. In this paper, we extend this study to a holographic description for the (3+1)-dimensional holographic DC Josephson junction. By solving numerically the coupled differential equations, we also obtain the familiar characteristics of Josephson junctions.

  5. Holographic Josephson Junction in 3+1 dimensions

    E-Print Network [OSTI]

    Wang, Yong-Qiang; Zhao, Zhen-Hua

    2011-01-01T23:59:59.000Z

    In arXiv:1101.3326[hep-th], a (2+1)-dimensional holographic Josephson junction was constructed, and it was shown that the DC Josephson current is proportional to the sine of the phase difference across the junction. In this paper, we extend this study to a holographic description for the (3+1)-dimensional holographic DC Josephson junction. By solving numerically the coupled differential equations, we also obtain the familiar characteristics of Josephson junctions.

  6. Untitled Page

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  7. DOE PAGES

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  8. DOE PAGES

    Office of Scientific and Technical Information (OSTI)

    a useful reference. Find out more Do you have questions about DOE PAGESBeta content, procedures, or policies? More information is available at OSTI's Public Access Policy page and...

  9. Home Page

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

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  10. Theory of Proximity Effect in Junctions with Unconventional Superconductors

    E-Print Network [OSTI]

    Fominov, Yakov

    Theory of Proximity Effect in Junctions with Unconventional Superconductors Relevance to odd)Singlet superconductor junctions ()Triplet superconductor junctions [PRB 70, 012507 (2004), PRB71 024506 spectroscopy of Unconventional superconductors Tunneling spectroscopy has phase sensitivity px- wave dx2 -y2

  11. SOME CHARACTERISTICS OF JOSEPHSON JUNCTIONS AS RADIATION DETECTORS

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    125 SOME CHARACTERISTICS OF JOSEPHSON JUNCTIONS AS RADIATION DETECTORS Yu. Ya. DIVIN, F. Ya. NAD les microponts. Abstract. 2014 The V-I characteristic of Josephson junction with an external parallel admittance, the high frequency impedance and high frequency response of a Josephson junction to small

  12. PARAMETRIC EXCITATION OF PLASMA OSCILLATIONS IN JOSEPHSON JUNCTIONS

    E-Print Network [OSTI]

    Boyer, Edmond

    223 PARAMETRIC EXCITATION OF PLASMA OSCILLATIONS IN JOSEPHSON JUNCTIONS N. F. PEDERSEN, M. R'équation différentielle de Mathieu. Abstract. 2014 Experiments on a Josephson junction analog showed a parametric in Josephson junctions at finite voltages have been discussed earlier [1]-[4]. In this communication we report

  13. JOSEPHSON JUNCTION DETECTOR FOR ASTRONOMICAL APPLICATIONS B. T. ULRICH

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    111 JOSEPHSON JUNCTION DETECTOR FOR ASTRONOMICAL APPLICATIONS B. T. ULRICH Department of Astronomy at the NRAO 11 m telescope. The detector uses a point contact Josephson junction, with a niobium point against-band Josephson junction radiometer for the 1.0 to 1.6 mm spectral region, and have used it to make astronomical

  14. AN ELECTRONIC EQUIVALENT SCHEME OF A JOSEPHSON JUNCTION

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    AN ELECTRONIC EQUIVALENT SCHEME OF A JOSEPHSON JUNCTION C. K. BAK Physics Laboratory I. A lot of phenomena observed in Josephson junctions are easily identified in the « equi- valent circuit ~. The lock range Ji corresponds to the supercurrent in a Josephson junction. The loop gain A(co) can

  15. Josephson junction simulation of neurons Patrick Crotty,1

    E-Print Network [OSTI]

    Segall, Ken

    Josephson junction simulation of neurons Patrick Crotty,1 Dan Schult,2 and Ken Segall1 1 Physics of neurons, we present superconducting circuits containing Josephson junctions that model biologically technologies, large interconnected networks of Josephson junction neurons would operate fully in parallel

  16. Superconductor-Correlated metal-Superconductor Josephson junctions

    E-Print Network [OSTI]

    Freericks, Jim

    Superconductor-Correlated metal- Superconductor Josephson junctions for high-speed digital. Freericks, Georgetown University, Josephson Junction talk, 2002 #12;Digital Electronics and RSFQ logic, Georgetown University, Josephson Junction talk, 2002 X X Binary 0, no flux Binary 1, one flux quantum #12

  17. Localized mode interactions in 0-Josephson junctions Hadi Susanto1

    E-Print Network [OSTI]

    Wirosoetisno, Djoko

    Localized mode interactions in 0- Josephson junctions Hadi Susanto1 and Gianne Derks2 1 School of Mathematics, University of Surrey, Guildford, Surrey, GU2 7XH, UK A long Josephson junction containing regions in the system, it is shown that Josephson junctions with phase-shift can be an ideal setting for studying

  18. Superconductor-Correlated metal-Superconductor Josephson junctions

    E-Print Network [OSTI]

    Freericks, Jim

    Superconductor-Correlated metal- Superconductor Josephson junctions for high-speed digital. Freericks, Georgetown University, Josephson Junction talk, 2003 #12;Digital Electronics and RSFQ logic, Georgetown University, Josephson Junction talk, 2003 X X Binary 0, no flux Binary 1, one flux quantum #12

  19. Multi-Scroll and Hypercube Attractors from Josephson Junctions

    E-Print Network [OSTI]

    Multi-Scroll and Hypercube Attractors from Josephson Junctions M¨us¸tak E. Yalc¸in Istanbul Leuven, Belgium Email: Johan.Suykens@esat.kuleuven.ac.be Abstract-- In this paper Josephson junctions of the Josephson junction in a general Jerk circuit in such a way that there is no need for synthesizing

  20. In the OSTI Collections: Josephson Junctions | OSTI, US Dept of Energy,

    Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

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  1. Contractor Fee Payments - Portsmouth Paducah Project Office | Department of

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  2. Building Technologies Office Program Peer Review | Department of Energy

    Energy Savers [EERE]

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |Energy UsageAUDITVehiclesTankless orA BRIEFAprilBudgetAbout » Building Technologies Office

  3. Bioenergy Technologies Office (BETO) Announces Renewable Carbon Fiber

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  4. BLM Carson City District Office | Open Energy Information

    Open Energy Info (EERE)

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  5. Bioenergy Technologies Office FY 2016 Budget At-A-Glance

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious Rank EERE: Alternative FuelsBSCmemo.pdf BSCmemo.pdf BSCmemo.pdfBetterBIOENERGY TECHNOLOGIES OFFICE FY 2016

  6. Richland/Office of River Protection | Department of Energy

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  7. SC Projects Perspective - Stephen Meador, Director, Office of Project

    Energy Savers [EERE]

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  8. Clean Energy Partnership CEP German Office | Open Energy Information

    Open Energy Info (EERE)

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  9. 2014 Chief Freedom of Information Act (FOIA) Officer Report

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    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |Energyon ArmedWaste and Materials2014 Chief Freedom of Information Act (FOIA) Officer Report

  10. Office of Energy Efficiency & Renewable Energy Video Gallery | Department

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  11. Colorado Office of Archaeology and Historic Preservation | Open Energy

    Open Energy Info (EERE)

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  12. Contacts for the Office of Administrative Operations | Department of Energy

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  13. Contacts for the Office of Standard Contract Management (GC-73) |

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    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Delicious RankCombustion |Energyon ArmedWaste andAccessCO2Administrative Operations Contacts for the Office

  14. BLM Humboldt River Field Office | Open Energy Information

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    Open Energy Info (EERE)

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  16. Office of Environment, Safety and Health Assessments Protocol for Site

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    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of Inspector GeneralDepartment of Energy from Elizabeth C. Chimento |Lessons Learned From FieldReading,

  17. Reference Buildings by Building Type: Large office | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

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  18. UNITED STATES DEPARTMENT OF ENERGY OFFICE OF CIVILIAN RADIOACTIVE WASTE

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    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page on Office of Inspector GeneralDepartment of EnergyofProject is on Track| Department of Energy UNIFORM PATENT

  19. Topological Order in Frustrated Josephson Junction Arrays

    E-Print Network [OSTI]

    M. C. Diamantini; P. Sodano; C. A. Trugenberger

    2008-06-02T23:59:59.000Z

    We show that electrically and magnetically frustrated Josephson junction arrays (JJAs) realize topological order with a non-trivial ground state degeneracy on manifolds with non-trivial topology. The low-energy theory has the same gauge dynamics of the unfrustrated JJAs but for different, "fractional" degrees of freedom, a principle reminescent of Jain's composite electrons in the fractional quantum Hall effect.

  20. Superconducting Topological Fluids in Josephson Junction Arrays

    E-Print Network [OSTI]

    M. Cristina Diamantini; Pasquale Sodano; Carlo A. Trugenberger

    2006-04-21T23:59:59.000Z

    We argue that the frustrated Josephson junction arrays may support a topologically ordered superconducting ground state, characterized by a non-trivial ground state degeneracy on the torus. This superconducting quantum fluid provides an explicit example of a system in which superconductivity arises from a topological mechanism rather than from the usual Landau-Ginzburg mechanism.

  1. Gallium nitride junction field-effect transistor

    DOE Patents [OSTI]

    Zolper, John C. (Albuquerque, NM); Shul, Randy J. (Albuquerque, NM)

    1999-01-01T23:59:59.000Z

    An all-ion implanted gallium-nitride (GaN) junction field-effect transistor (JFET) and method of making the same. Also disclosed are various ion implants, both n- and p-type, together with or without phosphorous co-implantation, in selected III-V semiconductor materials.

  2. Axion mass estimates from resonant Josephson junctions

    E-Print Network [OSTI]

    Beck, Christian

    2014-01-01T23:59:59.000Z

    Recently it has been proposed that dark matter axions from the galactic halo can produce a small Shapiro step-like signal in Josephson junctions whose Josephson frequency resonates with the axion mass [C. Beck, PRL 111, 231801 (2013)]. Here we show that the axion field equations in a voltage-driven Josephson junction environment allow for a nontrivial solution where the axion-induced electric current manifests itself as an oscillating supercurrent. The linear change of phase associated with this nontrivial solution implies the existence of a large magnetic field in a tiny surface area of the weak link region of the junction which makes incoming axions decay into microwave photons. We derive a condition for the design of Josephson junction experiments so that they can act as optimum axion detectors. Four independent recent experiments are discussed in this context. The observed Shapiro step anomalies of all four experiments consistently point towards an axion mass of $(110 \\pm 2)\\mu $eV. This mass value is com...

  3. Fast algorithms for triangular Josephson junction arrays

    SciTech Connect (OSTI)

    Datta, S.; Sahdev, D. [Indian Institute of Technology, Kanpur (India)] [Indian Institute of Technology, Kanpur (India)

    1997-04-01T23:59:59.000Z

    We develop fast algorithms for the numerical study of two-dimensional triangular Josephson junction arrays. The Dirac bra-ket formalism is introduced in the context of such arrays. We note that triangular arrays can have both hexagonal and rectangular periodicity and develop algorithms for each. Boundaries are next introduced and fast algorithms for finite arrays are developed. 40 refs., 4 figs.

  4. Measuring Vacuum Polarization with Josephson Junctions

    SciTech Connect (OSTI)

    Penin, Alexander A. [Department of Physics, University of Alberta, Edmonton, Alberta T6G 2J1 (Canada) and Institute for Nuclear Research of Russian Academy of Sciences, 117312 Moscow (Russian Federation)

    2010-03-05T23:59:59.000Z

    We argue that the vacuum polarization by the virtual electron-positron pairs can be measured by studying a Josephson junction in a strong magnetic field. The vacuum polarization results in a weak dependence of the Josephson constant on the magnetic field strength which is within the reach of the existing experimental techniques.

  5. Axion mass estimates from resonant Josephson junctions

    E-Print Network [OSTI]

    Christian Beck

    2014-06-10T23:59:59.000Z

    Recently it has been proposed that dark matter axions from the galactic halo can produce a small Shapiro step-like signal in Josephson junctions whose Josephson frequency resonates with the axion mass [C. Beck, PRL 111, 231801 (2013)]. Here we show that the axion field equations in a voltage-driven Josephson junction environment allow for a nontrivial solution where the axion-induced electric current manifests itself as an oscillating supercurrent. The linear change of phase associated with this nontrivial solution implies the formal existence of a large magnetic field in a tiny surface area of the weak link region of the junction which makes incoming axions decay into microwave photons. We derive a condition for the design of Josephson junction experiments so that they can act as optimum axion detectors. Four independent recent experiments are discussed in this context. The observed Shapiro step anomalies of all four experiments consistently point towards an axion mass of $(110 \\pm 2)\\mu $eV. This mass value is compatible with the recent BICEP2 results and implies that Peccei-Quinn symmetry breaking was taking place after inflation.

  6. Finance & Administration Controller's Office

    E-Print Network [OSTI]

    Weston, Ken

    Finance & Administration Controller's Office April 2014 Michael Williams Controller Controller ICOFA 61318 Revised: 4/4/2014 #12;Finance & Administration Controller's Office Accounting & Asset Coordinator Property Surplus Sales 81269 Revised: 4/4/2014 #12;Finance & Administration Controller's Office

  7. Office of Energy Efficiency & Renewable Energy | Department of Energy

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  8. Office of Energy Policy and Systems Analysis | Department of Energy

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  9. Office of Hearings and Appeals | Department of Energy

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  10. Office of Small and Disadvantaged Business Utilization Events | Department

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  14. Lamont Jackson Office of Electricity Delivery and Energy Reliability

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  15. Lamont Jackson Office of Electricity Delivery and Energy Reliability

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  18. MEMORANDUM FROM: THOMAS E. BROWN, DIRECTOR OFFICE OF CONTRACT MANAGEMENT

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  19. Memorandum for Chief Acquisition Officers, Senior Procurement Executives

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  20. Mission & Functions Statement for the Office of Environmental Management |

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  1. Mr. David Abney Chief Executive Officer Wise Services, Inc.

    Energy Savers [EERE]

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  2. Mr. Lamont Jackson Office of Electricity Delivery and Energy Reliability

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  3. Reference Buildings by Building Type: Medium office | Department of Energy

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  4. Special Inquiry on the Office of the Chief Financial Officer's Information Technology Expenditures, OAS-RA-L-12-01

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  6. MEMORANDUM FOR HUMAN RESOURCE DIRECTORS FROM: S~~'I~ OFFICE OF

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  7. David Danielson Assistant Secretary Office of Energy Efficiency and Renewable Energy

    Energy Savers [EERE]

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  8. Diana Bauer, Office of Policy and International Affairs, U.S. Department of

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  9. Docket No. EO-05-01: Letter from Kevin Kolevar, Director Office of

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  10. UESC Contracting Officer Issues

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    MAY 23, 2013 Presented by: Alice Oberhausen Former DoD Contracting Officer UESC PROCESSES - CONTRACTING OFFICER LINGERING QUESTIONS * With so much legislation surrounding the...

  11. Contracting Officers Guidebook

    Broader source: Energy.gov (indexed) [DOE]

    Contracting Officers Guidebook Energy Lawyers and Contracting Officers Working Group April 12, 2012 Federal Utility Partnership Working Group Spring 2012 Jekyll Island, GA UESC...

  12. PSU Business Affairs Office Purchasing Office

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    Caughman, John

    PSU Business Affairs Office Purchasing Office Costco Warehouse Program CARD USER AGREEMENT For each to the PSU Purchasing Office by the following date/time:____________________________________________. All admittance and make purchases at Costco. These cards and the original receipt will be promptly returned

  13. Home Page

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  1. DATE: PAGE:

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  20. Columbia University Postdoctoral Officers

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    Grishok, Alla

    Columbia University Postdoctoral Officers Handbook 2013 #12;Greetings! I am excited to welcome you to the Columbia University community of scholars and investigators. The Columbia University Office of Postdoctoral Director, Office of Postdoctoral Affairs Columbia University in the city of new york office of postdoctoral

  1. Dissipation and traversal time in Josephson junctions

    SciTech Connect (OSTI)

    Cacciari, Ilaria; Ranfagni, Anedio [Istituto di Fisica Applicata 'Nello Carrara' del Consiglio Nazionale delle Ricerche, via Madonna del Piano 10, 50019 Sesto Fiorentino, Firenze (Italy); Moretti, Paolo [Istituto dei Sistemi Complessi del Consiglio Nazionale delle Ricerche, Sezione di Firenze, via Madonna del Piano 10, 50019 Sesto Fiorentino, Firenze (Italy)

    2010-05-01T23:59:59.000Z

    The various ways of evaluating dissipative effects in macroscopic quantum tunneling are re-examined. The results obtained by using functional integration, while confirming those of previously given treatments, enable a comparison with available experimental results relative to Josephson junctions. A criterion based on the shortening of the semiclassical traversal time tau of the barrier with regard to dissipation can be established, according to which DELTAtau/tau > or approx. N/Q, where Q is the quality factor of the junction and N is a numerical constant of order unity. The best agreement with the experiments is obtained for N=1.11, as it results from a semiempirical analysis based on an increase in the potential barrier caused by dissipative effects.

  2. Screening current effects in Josephson junction arrays

    E-Print Network [OSTI]

    A. Petraglia; G. Filatrella; G. Rotoli

    1995-07-28T23:59:59.000Z

    The purpose of this work is to compare the dynamics of arrays of Josephson junctions in presence of magnetic field in two different frameworks: the so called XY frustrated model with no self inductance and an approach that takes into account the screening currents (considering self inductances only). We show that while for a range of parameters the simpler model is sufficiently accurate, in a region of the parameter space solutions arise that are not contained in the XY model equations.

  3. q-deformed dynamics and Josephson junction

    E-Print Network [OSTI]

    Ramandeep S. Johal

    2000-10-04T23:59:59.000Z

    We define a generalized rate equation for an observable in quantum mechanics, that involves a parameter q and whose limit $q\\to 1$ gives the standard Heisenberg equation. The generalized rate equation is used to study dynamics of current biased Josephson junction. It is observed that this toy model incorporates diffraction like effects in the critical current. Physical interpretation for q is provided which is also shown to be q-deformation parameter.

  4. Defect formation in long Josephson junctions

    SciTech Connect (OSTI)

    Gordeeva, Anna V. [Institute for Physics of Microstructures, RAS, GSP-105, Nizhny Novgorod 603950 (Russian Federation); Department of Physics, B309, Technical University of Denmark, DK-2800 Lyngby (Denmark); Pankratov, Andrey L. [Institute for Physics of Microstructures, RAS, GSP-105, Nizhny Novgorod 603950 (Russian Federation)

    2010-06-01T23:59:59.000Z

    We study numerically a mechanism of vortex formation in a long Josephson junction within the framework of the one-dimensional sine-Gordon model. This mechanism is switched on below the critical temperature. It is shown that the number of fluxons versus velocity of cooling roughly scales according to the power law with the exponent of either 0.25 or 0.5 depending on the temperature variation in the critical current density.

  5. Quantum dynamics in the bosonic Josephson junction

    SciTech Connect (OSTI)

    Chuchem, Maya; Cohen, Doron [Department of Physics, Ben-Gurion University of the Negev, P.O.B. 653, Beer-Sheva 84105 (Israel); Smith-Mannschott, Katrina [Department of Physics, Wesleyan University, Middletown, Connecticut 06459 (United States); MPI for Dynamics and Self-Organization, Bunsenstrasse 10, D-37073 Goettingen (Germany); Hiller, Moritz [Physikalisches Institut, Albert-Ludwigs-Universitaet, Hermann-Herder-Strasse 3, D-79104 Freiburg (Germany); Kottos, Tsampikos [Department of Physics, Wesleyan University, Middletown, Connecticut 06459 (United States); Vardi, Amichay [Department of Chemistry, Ben-Gurion University of the Negev, P.O.B. 653, Beer-Sheva 84105 (Israel); Institute for Theoretical Atomic, Molecular and Optical Physics, Harvard-Smithsonian Center for Astrophysics, 60 Garden Street, Cambridge, Massachusetts 02138 (United States)

    2010-11-15T23:59:59.000Z

    We employ a semiclassical picture to study dynamics in a bosonic Josephson junction with various initial conditions. Phase diffusion of coherent preparations in the Josephson regime is shown to depend on the initial relative phase between the two condensates. For initially incoherent condensates, we find a universal value for the buildup of coherence in the Josephson regime. In addition, we contrast two seemingly similar on-separatrix coherent preparations, finding striking differences in their convergence to classicality as the number of particles increases.

  6. Added Public Promotional Page! | OpenEI Community

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  9. Josephson junction in a thin film

    SciTech Connect (OSTI)

    Kogan, V. G.; Dobrovitski, V. V.; Clem, J. R.; Mawatari, Yasunori; Mints, R. G.

    2001-04-01T23:59:59.000Z

    The phase difference {phi}(y) for a vortex at a line Josephson junction in a thin film attenuates at large distances as a power law, unlike the case of a bulk junction where it approaches exponentially the constant values at infinities. The field of a Josephson vortex is a superposition of fields of standard Pearl vortices distributed along the junction with the line density {phi}'(y)/2{pi}. We study the integral equation for {phi}(y) and show that the phase is sensitive to the ratio l/{Lambda}, where l={lambda}{sub J}{sup 2}/{lambda}{sub L}, {Lambda}=2{lambda}{sub L}{sup 2}/d, {lambda}{sub L}, and {lambda}{sub J} are the London and Josephson penetration depths, and d is the film thickness. For l<<{Lambda}, the vortex ''core'' of the size l is nearly temperature independent, while the phase ''tail'' scales as l{Lambda}/y{sup 2}={lambda}{sub J}2{lambda}{sub L}/d/y{sup 2}; i.e., it diverges as T{yields}T{sub c}. For l>>{Lambda}, both the core and the tail have nearly the same characteristic length l{Lambda}.

  10. JOHNS HOPKINS UNIVERSITY Office of 2005-06

    E-Print Network [OSTI]

    Weaver, Harold A. "Hal"

    JOHNS HOPKINS UNIVERSITY Office of 2005-06 the Registrar Fall Term FALL TERM ENROLLMENT REPORT Enrollment Report 2005-06 Page 2 Fall Term Full-Time Students Part-Time Students Total Men Women Total Men

  11. HARVARD UNIVERSITY FINANCIAL POLICY Responsible Office: University Financial Services

    E-Print Network [OSTI]

    : Purchasing Card Page 2 of 7 #12;HARVARD UNIVERSITY FINANCIAL POLICY Responsible Office: University FinancialHARVARD UNIVERSITY FINANCIAL POLICY Responsible Office: University Financial Services Date First Effective: 4/1/2010 Revision Date: 6/30/2013 Purchasing Card Policy Statement Harvard Purchasing Cards

  12. Reduction in Work Force Unclassified Staff Office of Human Resources

    E-Print Network [OSTI]

    Howat, Ian M.

    Reduction in Work Force Unclassified Staff 9.15 Office of Human Resources Applies to: Regular by the Health System. Health System employees should contact their human resource department for further information. The Ohio State University Office of Human Resources Page 1 of 1 Policy 9.15 Reduction in Work

  13. New Mexico State Land Office | Open Energy Information

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  15. Single P-N junction tandem photovoltaic device

    DOE Patents [OSTI]

    Walukiewicz, Wladyslaw (Kensington, CA); Ager, III, Joel W. (Berkeley, CA); Yu, Kin Man (Lafayette, CA)

    2011-10-18T23:59:59.000Z

    A single P-N junction solar cell is provided having two depletion regions for charge separation while allowing the electrons and holes to recombine such that the voltages associated with both depletion regions of the solar cell will add together. The single p-n junction solar cell includes an alloy of either InGaN or InAlN formed on one side of the P-N junction with Si formed on the other side in order to produce characteristics of a two junction (2J) tandem solar cell through only a single P-N junction. A single P-N junction solar cell having tandem solar cell characteristics will achieve power conversion efficiencies exceeding 30%.

  16. Single P-N junction tandem photovoltaic device

    DOE Patents [OSTI]

    Walukiewicz, Wladyslaw (Kensington, CA); Ager, III, Joel W. (Berkeley, CA); Yu, Kin Man (Lafayette, CA)

    2012-03-06T23:59:59.000Z

    A single P-N junction solar cell is provided having two depletion regions for charge separation while allowing the electrons and holes to recombine such that the voltages associated with both depletion regions of the solar cell will add together. The single p-n junction solar cell includes an alloy of either InGaN or InAlN formed on one side of the P-N junction with Si formed on the other side in order to produce characteristics of a two junction (2J) tandem solar cell through only a single P-N junction. A single P-N junction solar cell having tandem solar cell characteristics will achieve power conversion efficiencies exceeding 30%.

  17. Fabrication of magnetic tunnel junctions with epitaxial and textured ferromagnetic layers

    DOE Patents [OSTI]

    Chang, Y. Austin (Middleton, WI); Yang, Jianhua Joshua (Madison, WI)

    2008-11-11T23:59:59.000Z

    This invention relates to magnetic tunnel junctions and methods for making the magnetic tunnel junctions. The magnetic tunnel junctions include a tunnel barrier oxide layer sandwiched between two ferromagnetic layers both of which are epitaxial or textured with respect to the underlying substrate upon which the magnetic tunnel junctions are grown. The magnetic tunnel junctions provide improved magnetic properties, sharper interfaces and few defects.

  18. Pseudospherical Junctions or Josephson Effect, Backlund Transformations, and Fine Structure Coupling

    E-Print Network [OSTI]

    Binder, Bernd

    , that the geometric phase evolution within M circularly and toroidally arranged virtual Josephson junctions (coupled by a special arrangement of Josephson junctions. In this con- text "virtual junction" means simply a scalar impedance will represent in this paper a "virtual Josephson junction". The Josephson junctions

  19. Classical phase diffusion in small hysteretic Josephson junctions

    SciTech Connect (OSTI)

    Martinis, J.M.; Kautz, R.L. (National Institute of Standards and Technology, Boulder, Colorado 80303 (US))

    1989-10-02T23:59:59.000Z

    The existence of classical phase diffusion in hysteretic junctions is demonstrated by quantitative agreement between experimental and simulated {ital I}-{ital V} curves. The simulations are based on a circuit that accurately models both the junction and its external shunting impedance at microwave frequencies. We show that the bias current at which the junction switches from the phase diffusion state to the voltage state is sensitive to dissipation at microwave frequencies.

  20. US Department of Energy Office of the Chief Information Officer

    Broader source: Energy.gov (indexed) [DOE]

    Office applications and enterprise business systems is simplified. Open and royalty-free: The Office XML Formats are universally accessible. Robust: The Office XML...