
- Dynamic Nuclear Polarization in the Fractional Quantum Hall Regime D. T. McClure,1
- Coulomb Blockade and Electron Spin in Quantum Dots C. M. Marcus1
- The Shot Noise Thermometer Lafe Frederick Spietz
- Locally Addressable Tunnel Barriers within a Carbon Nanotube
- Relaxation and Dephasing in a Two-Electron 13 C Nanotube Double Quantum Dot
- FAD Town Hall Meeting October 27, 2010
- VOLUME 86, NUMBER 10 P H Y S I C A L R E V I E W L E T T E R S 5 MARCH 2001 Spin Degeneracy and Conductance Fluctuations in Open Quantum Dots
- VOLUME 87, NUMBER 20 P H Y S I C A L R E V I E W L E T T E R S 12 NOVEMBER 2001 Decoherence in Nearly Isolated Quantum Dots
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- VOLUME 81, NUMBER 26 P H Y S I C A L R E V I E W L E T T E R S 28 DECEMBER 1998 Mesoscopic Coulomb Blockade in One-Channel Quantum Dots
- VOLUME 81, NUMBER 1 P H Y S I C A L R E V I E W L E T T E R S 6 JULY 1998 Dephasing in Open Quantum Dots
- Electronic Transport in Graphene: p-n Junctions, Shot Noise, and Nanoribbons
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- Adiabatic Quantum Pump of Spin-Polarized Current Eduardo R. Mucciolo,1
- 2007 Nature Publishing Group NEWS & VIEWS
- Tunable Nonlocal Spin Control in a CoupledQuantum Dot System
- High bias transport and magnetometer design in open quantum dots M. Switkes, A. G. Huibers, and C. M. Marcusa)
- Fast sensing of double-dot charge arrangement and spin state with a radio-frequency sensor quantum dot
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- Physica E 35 (2006) 251256 Preparing, manipulating, and measuring quantum states on a chip
- Coulomb-Modified Fano Resonance in a One-Lead Quantum Dot A. C. Johnson,1
- Shot-Noise Signatures of 0.7 Structure and Spin in a Quantum Point Contact L. DiCarlo,1,* Y. Zhang,1,* D. T. McClure,1,* D. J. Reilly,1
- Effect of Exchange Interaction on Spin Dephasing in a Double Quantum Dot E. A. Laird,1
- Singlet-triplet spin blockade and charge sensing in a few-electron double quantum dot A. C. Johnson, J. R. Petta, and C. M. Marcus
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- Bends in nanotubes allow electric spin control and coupling Karsten Flensberg1
- Rep. Prog. Phys., Vol 41, 1978. Printed in Great Britain Principles of dynamic nuclear polarisation
- Gate-controlled guiding of electrons in graphene J. R. Williams1,3, Tony Low2, M. S. Lundstrom2 and C. M. Marcus3
- Dynamic Nuclear Polarization in Double Quantum Dots M. Gullans,1
- ISSN:1369 7021 Elsevier Ltd 2010MARCH 2010 | VOLUME 13 | NUMBER 318 Carbon nanotubes for
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- Noise Correlations in a Coulomb-Blockaded Quantum Dot Yiming Zhang,1
- Tunable Noise Cross Correlations in a Double Quantum Dot D. T. McClure, L. DiCarlo, Y. Zhang, H.-A. Engel, and C. M. Marcus
- System for measuring auto-and cross correlation of current noise at low temperatures
- Charge sensing in carbon-nanotube quantum dots on microsecond timescales M. J. Biercuk,1 D. J. Reilly,1,2 T. M. Buehler,2 V. C. Chan,2 J. M. Chow,1 R. G. Clark,2 and C. M. Marcus1
- Spin Polarized Tunneling at Finite Bias S. O. Valenzuela, D. J. Monsma, C. M. Marcus, V. Narayanamurti, and M. Tinkham
- showed that a neglect patient's failure to explore the side of space contralateral to the
- Charge sensing of excited states in an isolated double quantum dot A. C. Johnson and C. M. Marcus
- Tripletsinglet spin relaxation via nuclei in a double quantum dot
- Anomalous Conductance Quantization in Carbon Nanotubes M. J. Biercuk, N. Mason, J. Martin,* A. Yacoby,* and C. M. Marcus
- Avalanche spin-valve transistor K. J. Russell,a)
- Quantum Information Processing, Vol. 3, Nos. 15, October 2004 ( 2004) Controlling Spin Qubits in Quantum Dots
- groups of neurons showing synchronous firing is termed a "synfire" chain.
- where 4 L/[ln(L/2R) 0.84] is the Stokes drag coefficient for a cylinder (26),
- Local Gating of Carbon Nanotubes M. J. Biercuk, N. Mason, and C. M. Marcus*
- Spin-valve photodiode Ian Appelbaum,a)
- Low-temperature atomic-layer-deposition lift-off method for microelectronic and nanoelectronic applications
- Photocurrent, Rectification, and Magnetic Field Symmetry of Induced Current through Quantum Dots
- Experimental Realization of a Quantum Spin Pump Susan K. Watson,1,2
- is worth emphasizing that the "energy gap" required to explain the increased preva-
- about 5.25 (Fig. 3A) while u( ) NPE duced by only about 1.6% (Fig. 3B). One can
- Long-Lived Memory for Mesoscopic Quantum Bits J. M. Taylor, C. M. Marcus, and M. D. Lukin
- VOLUME 86, NUMBER 10 P H Y S I C A L R E V I E W L E T T E R S 5 MARCH 2001 Spin-Orbit Effects in a GaAs Quantum Dot in a Parallel Magnetic Field
- Integrated nanotube circuits: Controlled growth and ohmic contacting of single-walled carbon nanotubes
- Controlled fabrication of metallic electrodes with atomic separation A. F. Morpurgo and C. M. Marcusa)
- possible applications of the PSCOF technol-ogy to nonliquid crystalline areas. This tech-
- VOLUME 81, NUMBER 26 P H Y S I C A L R E V I E W L E T T E R S 28 DECEMBER 1998 Changing the Electronic Spectrum of a Quantum Dot by Adding Electrons
- VOLUME 80, NUMBER 20 P H Y S I C A L R E V I E W L E T T E R S 18 MAY 1998 Statistics of Coulomb Blockade Peak Spacings
- 6. T. Yagi and T. Hishinuma, Geophys. Res. Lett. 22, 1933 (1995).
- VOLUME 79, NUMBER 12 P H Y S I C A L R E V I E W L E T T E R S 22 SEPTEMBER 1997 Mesoscopic Fluctuations of Elastic Cotunneling in Coulomb Blockaded Quantum Dots
- VOLUME 74, NUMBER 16 P H Y S I C A L R E V I E W L E T T E R S 17 APRIL 1995 Conduction Threshold, Switching, and Hysteresis in Quantum Dot Arrays
- Quantum Chaos in Open versus Closed Quantum Dots: Signatures of Interacting Particles
- FEEDBACK CONTROL OF A QUANTUM DOT C. M. MARCUS
- Control and fast Measurement of Spin Qubits A dissertation presented
- Electrical control of quantum dot spin qubits A dissertation presented
- Development of a Low Field Overhauser-Enhanced Magnetic Resonance
- Electron Transport in GaAs Heterostructures at Various Magnetic Field Strengths
- Charge Sensing and Spin Dynamics in GaAs Quantum Dots
- Local Gate Control in Carbon Nanotube Quantum Devices
- SPIN TRANSPORT MEASUREMENTS IN GaAs QUANTUM DOTS
- ELECTRONIC GROUND STATE PROPERTIES OF COULOMB BLOCKADED QUANTUM DOTS
- COHERENCE, CHARGING, AND SPIN EFFECTS IN QUANTUM DOTS AND POINT CONTACTS
- LEVEL SPECTROSCOPY OF A QUANTUM DOT
- ELECTRON TRANSPORT AND DEPHASING IN SEMICONDUCTOR QUANTUM DOTS
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- Magnetic Field Control of Exchange and Noise Immunity in Double Quantum
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- VOLUME 83, NUMBER 7 P H Y S I C A L R E V I E W L E T T E R S 16 AUGUST 1999 Coulomb Blockade Fluctuations in Strongly Coupled Quantum Dots
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- semi-major axis; however, even the values presented in this paper are accurate enough to lead to a good estimate of the mass of the
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- Nanomaterial-incorporated blown bubble films for large-area, aligned nanostructures
- Controlled Synthesis of Millimeter-Long Silicon Nanowires with Uniform
- Nature Macmillan Publishers Ltd 1998 letters to nature
- Graphene and Nanowire Transistors for Cellular Interfaces and Electrical Recording
- Probing electron transfer mechanisms in Shewanella oneidensis MR-1 using a nanoelectrode
- Coaxial multishell nanowires with high-quality electronic interfaces and tunable optical
- Drupal.behaviors.print = function(context) {window.print();window.close();}> Oxford Nanopore Technologies Opens
- Explorations in Dirac Fermions and Spin Liquids A dissertation presented
- Spin and Charge Fluctuations in Strongly Correlated Systems
- MICHAEL TINKHAM Born: February 23, 1928
- Supplementary information for: Kinked p-n Junction Nanowire Probes for High Spatial Resolution
- Si/a-Si Core/Shell Nanowires as Nonvolatile Crossbar Switches
- Back to previous page Famed tenor Placido
- Large-area blown bubble films of aligned nanowires and carbon nanotubes
- The aim of the new interdisciplinary research group "InnoMedTec" to be established in the framework of the European Social Fund (ESF) in Federal State Saxony is the development and application of innovative
- Subscriber access provided by HARVARD UNIV Nano Letters is published by the American Chemical Society. 1155 Sixteenth
- Saturn'sbeat Geophys.Res.Lett.doi:10.1029/2010GL044057(2010)
- Professor Charles Lieber receives Israel's Wolf Prize Thursday, January 12, 2012
- Nanowire transistor arrays for mapping neural circuits in acute brain slices
- Sub-100 Nanometer Channel Length Ge/Si Nanowire Transistors with
- Single-crystalline kinked semiconductor nanowire superstructures
- Scaling of Dynamical Decoupling for Spin Qubits J. Medford,1
- Coaxial silicon nanowires as solar cells and nanoelectronic power sources