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Half-mirror for electrons on quantum Hall copropagating edge channels

Jun-ichiro Ohe, Takase Shimizu

2012enquantumhalledgechannelselectronics

Abstract

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A half-mirror that divides a spin-polarized electron into two parallel copropagating spin-resolved quantum Hall edge channels one half each is presented in this study. The partition process was coherent, as confirmed by observing the Aharonov–Bohm oscillation at a high visibility of up to 60% in a Mach–Zehnder interferometer, which comprised two such half-mirrors. The device characteristics were highly stable, making the device promising in the application of quantum information processing. The beam-splitting process is theoretically modelled, and the numerical simulation successfully reproduces the experimental observation. The partition of the electron accompanied by the spin rotation is explained by the angular momentum transfer from the orbital to the spin via spin–orbit interactions.

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Cite This Work

@article{f2ef49e9-5a5a-487b-a82e-57ccb19d31a6,
  title={Half-mirror for electrons on quantum Hall copropagating edge channels},
  author={Jun-ichiro Ohe and Takase Shimizu},
  year={2012},
  language={en}
}
TY  - JOUR
TI  - Half-mirror for electrons on quantum Hall copropagating edge channels
AU  - Jun-ichiro Ohe
AU  - Takase Shimizu
PY  - 2012
LA  - en
ER  -

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