The Experts below are selected from a list of 117 Experts worldwide ranked by ideXlab platform
J. R. Schrieffer - One of the best experts on this subject based on the ideXlab platform.
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Fractional Electrons in Liquid Helium?
Journal of Low Temperature Physics, 2001Co-Authors: R Jackiw, C. Rebbi, J. R. SchriefferAbstract:We argue that electrons in Liquid Helium bubbles are not fractional, they are in a superposed state.
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Fractional Electrons in Liquid Helium?
Journal of Low Temperature Physics, 2001Co-Authors: R Jackiw, C. Rebbi, J. R. SchriefferAbstract:We argue that electrons in Liquid Helium bubbles are not fractional, they are entangled.
R Jackiw - One of the best experts on this subject based on the ideXlab platform.
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Fractional Electrons in Liquid Helium?
Journal of Low Temperature Physics, 2001Co-Authors: R Jackiw, C. Rebbi, J. R. SchriefferAbstract:We argue that electrons in Liquid Helium bubbles are not fractional, they are in a superposed state.
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Fractional Electrons in Liquid Helium?
Journal of Low Temperature Physics, 2001Co-Authors: R Jackiw, C. Rebbi, J. R. SchriefferAbstract:We argue that electrons in Liquid Helium bubbles are not fractional, they are entangled.
C. Rebbi - One of the best experts on this subject based on the ideXlab platform.
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Fractional Electrons in Liquid Helium?
Journal of Low Temperature Physics, 2001Co-Authors: R Jackiw, C. Rebbi, J. R. SchriefferAbstract:We argue that electrons in Liquid Helium bubbles are not fractional, they are in a superposed state.
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Fractional Electrons in Liquid Helium?
Journal of Low Temperature Physics, 2001Co-Authors: R Jackiw, C. Rebbi, J. R. SchriefferAbstract:We argue that electrons in Liquid Helium bubbles are not fractional, they are entangled.
Y. Mukharsky - One of the best experts on this subject based on the ideXlab platform.
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An Electronic Array On Liquid Helium
AIP Conference Proceedings, 2006Co-Authors: D. G. Rees, P. Glasson, Vladimir Antonov, R. Bennett, P. Fozooni, P. G. Frayne, Pj Meeson, L. R. Simkins, Y. MukharskyAbstract:Surface‐state electrons on Liquid Helium, have been proposed as condensed matter qubits. We have demonstrated that small numbers of electrons, including a single isolated electron, can be held in an electrostatic trap above the surface of superfluid Helium and individually detected using a superconducting single‐electron transistor (SET). A new design for a quantum information processor, using an array of electron traps on Liquid Helium, has been fabricated on a Si wafer using a superconducting A1 SET.
Tim Powers - One of the best experts on this subject based on the ideXlab platform.
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Automated Liquid Helium transfer system
Review of Scientific Instruments, 1999Co-Authors: G. Mark Cushman, Richard M. Gummer, Ernie Buchanan, Omar Jenkins, Tim PowersAbstract:An optimized automated Liquid Helium transfer system diverts warm gas from entering the cryostat, saves on Liquid Helium consumption, reduces man hours, and enhances safety. Control electronics, cryogenic valves and a multipiped transfer line are also discussed.