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arxiv: 1009.3425 · v1 · pith:W4CTGF47new · submitted 2010-09-17 · ❄️ cond-mat.supr-con · physics.atom-ph· quant-ph

Trapped electron coupled to superconducting devices

classification ❄️ cond-mat.supr-con physics.atom-phquant-ph
keywords electronsuperconductingcoupletrappedvortexwellallowcoupled
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We propose to couple a trapped single electron to superconducting structures located at a variable distance from the electron. The electron is captured in a cryogenic Penning trap using electric fields and a static magnetic field in the Tesla range. Measurements on the electron will allow investigating the properties of the superconductor such as vortex structure, damping and decoherence. We propose to couple a superconducting microwave resonator to the electron in order to realize a circuit QED-like experiment, as well as to couple superconducting Josephson junctions or superconducting quantum interferometers (SQUIDs) to the electron. The electron may also be coupled to a vortex which is situated in a double well potential, realized by nearby pinning centers in the superconductor, acting as a quantum mechanical two level system that can be controlled by a transport current tilting the double well potential. When the vortex is trapped in the interferometer arms of a SQUID, this would allow its detection both by the SQUID and by the electron.

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