Emergence of Classical Random Walk from Non-Hermitian Effects in Quantum Kicked Rotor.

IF 2 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Entropy Pub Date : 2025-03-10 DOI:10.3390/e27030288
Wenxuan Song, Jiaming Zhang, Lihao Hua, Zhihua Xiong, Wenlei Zhao
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Abstract

We investigate the quantum random walk in momentum space of a spinor kicked rotor with a non-Hermitian kicking potential. We find that the variance in momentum distributions transitions from quadratic to linear growth over time for the non-Hermitian case. Correspondingly, the momentum distributions are in the shape of Gaussian wavepackets, providing clear evidence of a classical random walk induced by the non-Hermitian-driven potential. Remarkably, the rate of the linear growth of the variance diverges as the non-Hermitian parameter approaches zero. In the Hermitian case, deviations from the quantum resonance condition dramatically suppress the quadratic growth of the variance, leading to dynamical localization of the quantum walk. Under such quantum non-resonance conditions, the classical random walk is significantly reduced by the non-Hermitian-driven potential. Interestingly, non-Hermiticity enhances quantum entanglement between internal degrees of freedom, while deviations from the quantum resonance condition reduce it. Possible applications of our findings are discussed.

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量子踢转子非厄米效应下经典随机游走的出现。
我们研究了具有非赫米提踢势的自旋踢转子在动量空间中的量子随机漫步。我们发现,在非赫米提情况下,动量分布的方差随时间从二次增长转变为线性增长。相应地,动量分布呈高斯波包形状,清楚地证明了非ermitian 驱动势所诱导的经典随机漫步。值得注意的是,当非赫米特参数趋近于零时,方差的线性增长速度会发散。在赫米特情况下,量子共振条件的偏离极大地抑制了方差的二次增长,从而导致量子行走的动态局部化。在这种量子非共振条件下,经典随机漫步会被非赫米秩驱动的势能显著削弱。有趣的是,非恒定性增强了内部自由度之间的量子纠缠,而量子共振条件的偏离则降低了量子纠缠。本文讨论了我们的发现的可能应用。
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来源期刊
Entropy
Entropy PHYSICS, MULTIDISCIPLINARY-
CiteScore
4.90
自引率
11.10%
发文量
1580
审稿时长
21.05 days
期刊介绍: Entropy (ISSN 1099-4300), an international and interdisciplinary journal of entropy and information studies, publishes reviews, regular research papers and short notes. Our aim is to encourage scientists to publish as much as possible their theoretical and experimental details. There is no restriction on the length of the papers. If there are computation and the experiment, the details must be provided so that the results can be reproduced.
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