开放量子系统中的分岔与混沌

IF 0.8 4区 地球科学 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Radiophysics and Quantum Electronics Pub Date : 2023-10-10 DOI:10.1007/s11141-023-10276-6
I. I. Yusipov, S. V. Denisov, M. V. Ivanchenko
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引用次数: 0

摘要

研究开放量子系统和在这些系统中出现的动力学机制是理论和实验物理学的一个积极发展的领域。尽管分岔分析和动力学混沌理论是非线性动力学的重要分支,但它们在描述开放耗散量子系统中发生的过程方面的应用直到最近才受到限制。在这项工作中,我们回顾了关于这类系统振荡理论方法推广的最新结果。我们提出了经典分叉的量子类似物,这些量子类似物在渐近密度矩阵的结构变化中观察到,即节叉分叉、鞍节点分叉、通过倍周期级联向量子混沌的过渡,以及Neimark–Sacker分叉。我们还考虑了耗散量子混沌的数值特性。最大的量子李雅普诺夫指数基于分析初始闭合量子轨迹的发散率,使人们能够数值研究各种开放量子系统的规则域和混沌域的结构。还考虑了在物理实验中可以观察到的耗散量子混沌的数值特性。结果表明,对于开放量子腔中的规则和混沌状态,系统连续发射单个光子之间的时间分布具有质的不同统计。
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Bifurcations and Chaos in Open Quantum Systems

A study of open quantum systems and dynamical regimes that emerge in such systems is an actively developing field of the theoretical and experimental physics. Although the bifurcation analysis and the theory of dynamical chaos are very important branches of nonlinear dynamics, their use for describing the processes occurring in open dissipative quantum systems has been restricted until recently. In this work, we present a review of recent results on the generalization of the methods of the oscillation theory for such systems. We present quantum analogs of the classical bifurcations, which are observed in the structural changes of the asymptotic density matrix, namely, the pitchfork bifurcation, saddle-node bifurcation, transition to quantum chaos via a period-doubling cascade, and the Neimark–Sacker bifurcation. We also consider numerical characteristics of dissipative quantum chaos. The largest quantum Lyapunov exponent, which is based on analyzing the divergence rate of the initially close quantum trajectories, allows one to numerically study the structure of the regular and chaotic domains of various open quantum systems. Numerical characteristics of dissipative quantum chaos, which can be observed in a physical experiment, are also considered. It is shown that the qualitatively different statistics of the distribution of times between the successive emissions of individual photons by the system take place for the regular and chaotic regimes in an open quantum cavity.

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来源期刊
Radiophysics and Quantum Electronics
Radiophysics and Quantum Electronics ENGINEERING, ELECTRICAL & ELECTRONIC-PHYSICS, APPLIED
CiteScore
1.10
自引率
12.50%
发文量
60
审稿时长
6-12 weeks
期刊介绍: Radiophysics and Quantum Electronics contains the most recent and best Russian research on topics such as: Radio astronomy; Plasma astrophysics; Ionospheric, atmospheric and oceanic physics; Radiowave propagation; Quantum radiophysics; Pphysics of oscillations and waves; Physics of plasmas; Statistical radiophysics; Electrodynamics; Vacuum and plasma electronics; Acoustics; Solid-state electronics. Radiophysics and Quantum Electronics is a translation of the Russian journal Izvestiya VUZ. Radiofizika, published by the Radiophysical Research Institute and N.I. Lobachevsky State University at Nizhnii Novgorod, Russia. The Russian volume-year is published in English beginning in April. All articles are peer-reviewed.
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