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噪声量子受驱转子中通过增益和损耗实现的受保护量子相干性。

Protected quantum coherence by gain and loss in a noisy quantum kicked rotor.

作者信息

Wang Wen-Yuan, Zhao Wen-Lei

机构信息

Key Laboratory of Atomic and Molecular Physics & Functional Materials of Gansu Province, College of Physics and Electronic Engineering, Northwest Normal University, Lanzhou 730070, People's Republic of China.

Beijing Computational Science Research Center, Beijing 100193, People's Republic of China.

出版信息

J Phys Condens Matter. 2021 Oct 29;34(2). doi: 10.1088/1361-648X/ac2b68.

Abstract

We study the effects of non-Hermiticity on quantum coherence via a noisy quantum kicked rotor (NQKR). The random noise comes from the fluctuations in kick amplitude at each time. The non-Hermitian driving indicates the imaginary kicking potential, representing the environment-induced atom gain and loss. In the absence of gain and loss, the random noise destroys quantum coherence manifesting dynamical localization, which leads to classical diffusion. Interestingly, in the presence of non-Hermitian kicking potential, the occurrence of dynamical localization is highly sensitive to the gain and loss, manifesting the restoration of quantum coherence. Using the inverse participation ratio arguments, we numerically obtain a phase diagram of the classical diffusion and dynamical localization on the parameter plane of noise amplitude and non-Hermitian driving strength. With the help of analysis on the corresponding quasieigenstates, we achieve insight into dynamical localization, and uncover that the origin of the localization is interference between multiple quasi-eigenstates of the quantum kicked rotor. We further propose an experimental scheme to realize the NQKR in a dissipative cold atomic gas, which paves the way for future experimental investigation of an NQKR and its anomalous non-Hermitian properties.

摘要

我们通过一个含噪声的量子受驱转子(NQKR)来研究非厄米性对量子相干性的影响。随机噪声源于每次踢动幅度的涨落。非厄米驱动表示虚数踢动势,代表环境诱导的原子增益和损耗。在没有增益和损耗的情况下,随机噪声会破坏表现为动力学局域化的量子相干性,进而导致经典扩散。有趣的是,在存在非厄米踢动势的情况下,动力学局域化的出现对增益和损耗高度敏感,表现为量子相干性的恢复。利用逆参与率论证,我们在噪声幅度和非厄米驱动强度的参数平面上数值得到了经典扩散和动力学局域化的相图。借助对相应准本征态的分析,我们深入了解了动力学局域化,并发现局域化的起源是量子受驱转子的多个准本征态之间的干涉。我们进一步提出了一个在耗散冷原子气体中实现NQKR的实验方案,这为未来对NQKR及其反常非厄米性质的实验研究铺平了道路。

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