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迈向砷化镓双量子点中的高保真相干电子自旋输运。

Toward high-fidelity coherent electron spin transport in a GaAs double quantum dot.

作者信息

Zhao Xinyu, Hu Xuedong

机构信息

Department of Physics, University at Buffalo, SUNY, Buffalo, New York, 14260-1500, USA.

出版信息

Sci Rep. 2018 Sep 18;8(1):13968. doi: 10.1038/s41598-018-31879-4.

Abstract

In this paper, we investigate how to achieve high-fidelity electron spin transport in a GaAs double quantum dot. Our study examines fidelity loss in spin transport from multiple perspectives. We first study incoherent fidelity loss due to hyperfine and spin-orbit interaction. We calculate fidelity loss due to the random Overhauser field from hyperfine interaction, and spin relaxation rate due to spin-orbit interaction in a wide range of experimental parameters with a focus on the occurrence of spin hot spots. A safe parameter regime is identified in order to avoid these spin hot spots. We then analyze systematic errors due to non-adiabatic transitions in the Landau-Zener process of sweeping the interdot detuning, and propose a scheme to take advantage of possible Landau-Zener-Stückelberg interference to achieve high-fidelity spin transport at a higher speed. At last, we study another systematic error caused by the correction to the electron g-factor from the double dot potential, which can lead to a notable phase error. In all, our results should provide a useful guidance for future experiments on coherent electron spin transport.

摘要

在本文中,我们研究了如何在砷化镓双量子点中实现高保真电子自旋输运。我们的研究从多个角度考察了自旋输运中的保真度损失。我们首先研究了由于超精细和自旋轨道相互作用导致的非相干保真度损失。我们计算了超精细相互作用产生的随机奥弗豪泽场导致的保真度损失,以及在广泛的实验参数范围内,聚焦于自旋热点出现情况的自旋轨道相互作用导致的自旋弛豫率。确定了一个安全的参数范围以避免这些自旋热点。然后,我们分析了在扫描量子点间失谐的朗道 - 齐纳过程中由于非绝热跃迁导致的系统误差,并提出了一种利用可能的朗道 - 齐纳 - 施图克尔贝格干涉以更高速度实现高保真自旋输运的方案。最后,我们研究了由双量子点势对电子g因子的修正引起的另一种系统误差,这可能导致显著的相位误差。总之,我们的结果应为未来相干电子自旋输运实验提供有用的指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5fe/6143546/4f5bfd7e8535/41598_2018_31879_Fig1_HTML.jpg

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