
- Two-Photon Differential Aberration Imaging using a Modulating Retroreflector Mirror
- September 1, 2002 / Vol. 27, No. 17 / OPTICS LETTERS 1537 Use of a microelectromechanical mirror for adaptive optics
- Rejection of two-photon fluorescence background in thick tissue by
- Precision manufacture of optical disc master stampers
- Development of a 4096 Element MEMS Continuous Membrane Deformable Mirror for High Contrast
- High-speed wavefront control using MEMS micromirrors T. G. Bifano and J. B. Stewart, Boston University [5895-27]
- Continuous-membrane surface-micromachined silicon deformable mirror
- In vivo fluorescent imaging of the mouse retina using adaptive optics
- Statistical performance evaluation of electrostatic micro actuators for a deformable mirror Raji Krishnamoorthy, Thomas Bifano, Guido Sandri
- MEMS Deformable Mirrors for Astronomical Adaptive Optics S.A. Cornelissen1
- I~IUTTERWQRTH Contouring algorithm for
- Planarization of a CMOS die for an integrated metal MEMS Hocheol Lee*, Michele H. Miller+
- Micromachined Deformable Mirrors for Dynamic Wavefront Control Thomas Bifanoa
- Demonstrating sub-nm closed loop MEMS flattening
- 4096-element continuous face-sheet MEMS deformable mirror for high-contrast imaging
- Improvements in two-photon fluorescence microscopy Kengyeh K. Chu(1)
- MOEMS spatial light modulator development at the Center for Adaptive Optics
- Adaptive Optics Calibration for a Wide-Field Microscope Janice Castillo*
- Adaptive optics two-photon fluorescence microscopy Yaopeng Zhou1
- INSTITUTE OF PHYSICS PUBLISHING JOURNAL OF MICROMECHANICS AND MICROENGINEERING J. Micromech. Microeng. 14 (2004) 108115 PII: S0960-1317(04)61661-5
- Large-Scale Polysilicon Surface Micro-Machined Spatial Light Modulator Clara Dimas
- Open-loop control of a MEMS deformable mirror for large-amplitude wavefront control
- MEMS Wavefront Correctors Thomas Bifano
- INSTITUTE OF PHYSICS PUBLISHING JOURNAL OF MICROMECHANICS AND MICROENGINEERING J. Micromech. Microeng. 16 (2006) 303313 doi:10.1088/0960-1317/16/2/015
- Stroke amplifier for deformable mirrors Robert H. Webb, Marc J. Albanese, Yaopeng Zhou, Thomas Bifano, and
- Adaptive optic correction using microelectromechanical deformable mirrors
- Ion-beam machining of millimeter scale optics Prashant M. Shanbhag, Michael R. Feinberg, Guido Sandri, Mark N. Horenstein, and
- Z .Sensors and Actuators 80 2000 5361 www.elsevier.nlrlocatersna
- J. Micromech. Microeng. 9 (1999) 294299. Printed in the UK PII: S0960-1317(99)97842-7 A design-based approach to
- Development of microelectromechanical deformable mirrors for phase modulation of light
- Ion beam figuring of small optical components Thomas W. Drueding
- T. G. Bifano Department of Aerospace and Mechanical
- Vision Correction in the 21st Century Traditional phoropters used by ophthalmologists and optometrists are used to both
- Shaping Light: MOEMS Deformable Mirrors for Microscopes and Thomas Bifano
- Open loop control on large stroke MEMS deformable mirrors Alioune Diouf 1
- Through-Wafer Interconnects for High Degree of Freedom MEMS Deformable Mirrors
- Deformable MEMS mirrors in secure optical communication system Leah Ziph-Schatzberg*a
- A 4096 Element Continuous Facesheet MEMS Deformable Mirror for High-Contrast Imaging
- An adaptive optics biomicroscope for mouse retinal imaging David P. Bissa, Robert H. Webba, Yaopeng Zhoub, Thomas G. Bifanob, Parisa Zamiric, and
- The Visible Nulling Coronagraph--Architecture Definition and Technology Development Status
- Design and development of a 329-segment tip-tilt piston mirror array for space-based adaptive optics
- Chip-scale Integrated Driver for Electrostatic DM Control Duk Joong Kim1
- Micromachined Deformable Mirrors for Adaptive Optics Thomas Bifano*a
- Large-scale metal MEMS mirror arrays with integrated electronics
- Compact adaptive optical compensation systems using continuous silicon deformable mirrors
- Microelectromechanical spatial light modulators with integrated electronics
- MANUFACTURING OF AN OPTICAL QUALITY MIRROR SYSTEM FOR ADAPTIVE OPTICS
- Micro-electromechanical systems spatial light modulator development S. Oliviera, p Bierden", T. Bifanoc, D. Bjshop", E. Carr, w. Cowan, M. M. P.
- MEMS arrays for deformable mirrors Raji Krishnamoorthy
- EK720 Biophotonic System Design and Prototyping Spring 2010, MW 2-4PM, Rm 901
- Current and future facility instruments at the Gemini Observatory Joseph B. Jensen, Scot J. Kleinman, Douglas A. Simons,
- ViLLaGEs: Opto-Mechanical Design of an on-sky visible-light MEMS-based AO system
- Secure optical communication system utilizing deformable MEMS Leah Ziph-Schatzberg*a
- Fiber coupling with adaptive optics for free-space optical communication Thomas Weyraucha
- ADAPTIVE OPTIC CORRECTION USING SILICON BASED DEFORMABLE MIRRORS
- 592 JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, VOL. 11, NO. 5, OCTOBER 2002 Elimination of Stress-Induced Curvature in Thin-Film
- R. Krishnamoorthy Precision Engineering Research Laboratory,
- DEVELOPMENT OF AN ION FIGURING SYSTEM FOR CENTIMETER SCALE OPTICAL COMPONENTS
- IEEE TRANSACTIONS ON ENGINEERING MANAGEMENT, VOL. 52, NO. 2, MAY 2005 269 Management of R&D Projects Under Uncertainty: A
- Characterization of Contour Shapes Achievable with a MEMS Deformable Mirror
- Design, fabrication, and open-loop control of micro deformable mirrors for astronomical telescopes
- PolysiliconSurfaceMicro-Machined SpatialLightModulatorwithNovelElectronic Integration
- MEMS-based adaptive optics scanning laser ophthalmoscopy
- Modeling and parameter estimation for point-actuated continuous-facesheet
- HIGH-RESOLUTION WAVEFRONT CONTROL USING MICROMIRROR ARRAYS
- JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, VOL. 7, NO. 4, DECEMBER 1998 395 Development of a MEMS Microvalve
- MEMS spatial light modulators with integrated electronics Thomas Becker, tbecker@bu.edu
- A micromachined deformable mirror for optical wavefront compensation
- Optical Characterization ofMEMS Deformable Mirror Array Structures Soe-Mie F. Nee*a, Lewis F. DeSandrea, Thomas Bifano**b, Linda F. johnsona and Mark B. Morana
- ( 1 of 14 ) United States Patent 6,705,345
- Sensors and Actuators A 138 (2007) 230238 Design and development of a 331-segment tiptiltpiston
- ANNUAL REPORT 2009 -2010 annual report 2009 -2010
- Int. 1. Maria. Tools Maa~fa~t. Vol. 37. No. 7. PC. 935-946. 1997 1997 Elsevier Science lad. All tishta reserved
- A hydromechanical biomimetic cochlea: Experiments Fangyi Chena
- 912 JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, VOL. 13, NO. 6, DECEMBER 2004 Development of a Rapid-Response Flow-Control
- 36 R&DMagazine September 2007 www.rdmag.com LIFE SCIENCE
- Photoacoustic-guided convergence of light through optically diffusive media
- Design and fabrication of reflective spatial light modulators for high-dynamic-range wavefront control
- Neutral ion figuring of chemical vapor deposited SiC
- 2004 IEEEAerospace Conference Proceedings Coherent Communications, Imaging and Targeting'72
- Fabrication of implantable microshunt using
- ( 1 of 13 ) United States Patent 6,529,311
- Journal of Electrostatics 54 (2002) 321332 Electrostatic micromirrors for subaperturing in
- IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, VOL. 5, NO. 1, JANUARY/FEBRUARY 1999 83 Microelectromechanical Deformable Mirrors
- Microscale adaptive optics: wave-front control with a -mirror array and a VLSI stochastic
- Precise open-loop control of MEMS deformable mirror shape Thomas Bifano a,c
- Megapixel wavefront correctors Thomas Bifano', Paul Bierden2, Hao Zhu2, Steven Cornelissen2, and Jin Hong Kim3
- Two-photon fluorescence microscopy with differential aberration Kengyeh K. Chua
- T. G. Bifano J. B. Hosier
- EK101 Engineering Light Sleepwalkers
- EK101 Engineering Light Smart Lighting
- Ultra-low-power multiplexed electronic driver for high resolution deformable mirror systems
- Adaptive optics two photon scanning laser fluorescence microscopy Yaopeng Zhou1
- EK101 Engineering Light Project: Evaluate Residential Lighting
- This article was downloaded by: [Boston University], [Thomas Bifano] On: 28 August 2011, At: 12:44
- Engineering Light Course instructor: Dr. Thomas Bifano
- Polymorphic optical zoom with MEMS DMs , Samuel M. Hoffman1
- doi: 10.1098/rsnr.1981.0002 , 13-36361981Notes Rec. R. Soc. Lond.
- EK101 Engineering Light Preflight Questions
- The Bakerian Lecture: Experiments and Calculations Relative to Physical Optics Author(s): Thomas Young
- Phys Educ,B[lSS)).PrmledlnlheUK The physicsof the compactdisc
- Multiple-Color Optical Activation, Silencing, and Desynchronization of Neural Activity, with Single-Spike
- EK101 Engineering Light Blackbody Radiation and Circuits
- QUASAR ELECTRONICS KIT No. 1086 CAR SOUND TO LIGHT MODULATOR
- Control of deformable mirror with light-intensity measurements through single-mode fiber
- EK101 Engineering Light Andrea Armani Talk
- EK101 Engineering Light Term Project
- NATURE PHOTONICS | VOL 5 | JANUARY 2011 | www.nature.com/naturephotonics 21 INDUSTRY PERSPECTIVE TECHNOLOGY FOCUS
- Boston Micromachines Corporation | 30 Spinelli Place Cambridge, MA 02138 | Tel: 617.868.4178 | www.bostonmicromachines.com | July 2010 Adaptive Optics 101 : Overview, Tech Review & Applications
- Public Open Night at the Observatory The Public Open Night at the Observatory is a chance for people to come observe the night sky through
- For personal use. Only reproduce with permission from The Lancet Publishing Group. MECHANISMS OF DISEASE
- EK101 Engineering Light Term Project: Getting Started
- shaping the future Electrically tunable lens
- USB-1208LS Analog and Digital I/O Module
- EK101 Engineering Light Term Project: Getting Started
- EK101 Engineering Light Term Project: Getting Started
- Author's personal copy Chromatic and spherical aberration correction for silicon aplanatic solid
- 26 | VOL.8 NO.1 | JANUARY 2011 | NATURE METHODS SPECIAL FEATURE | COMMENTARY METHOD OF THE YEAR
- EK101 Engineering Light Term Project: Getting Started
- EK101 Engineering Light Lenses and imaging
- June 15, 1997 / Vol. 22, No. 12 / OPTICS LETTERS 907 Adaptive phase-distortion correction based on