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耦合到非马尔可夫环境的光机械系统中的混沌

Chaos in Optomechanical Systems Coupled to a Non-Markovian Environment.

作者信息

Chen Pengju, Yang Nan, Couvertier Austen, Ding Quanzhen, Chatterjee Rupak, Yu Ting

机构信息

Center for Quantum Science and Engineering, Department of Physics, Stevens Institute of Technology, Hoboken, NJ 07030, USA.

Deptartment of Applied Physics, New York University Tandon School of Engineering, Brooklyn, NY 11201, USA.

出版信息

Entropy (Basel). 2024 Aug 30;26(9):742. doi: 10.3390/e26090742.

Abstract

We study the chaotic motion of a semi-classical optomechanical system coupled to a non-Markovian environment with a finite correlation time. By studying the emergence of chaos using the Lyapunov exponent with the changing non-Markovian parameter, we show that the non-Markovian environment can significantly enhance chaos. It is observed that a non-Markovian environment characterized by the Ornstein-Uhlenbeck type noise can modify the generation of chaos with different environmental memory times. As a comparison, the crossover properties from Markov to non-Markovian regimes are also discussed. Our findings indicate that the quantum memory effects on the onset of chaos may become a useful property to be investigated in quantum manipulations and control.

摘要

我们研究了一个与具有有限关联时间的非马尔可夫环境耦合的半经典光机械系统的混沌运动。通过使用李雅普诺夫指数研究随着非马尔可夫参数变化混沌的出现,我们表明非马尔可夫环境可以显著增强混沌。据观察,以奥恩斯坦 - 乌伦贝克型噪声为特征的非马尔可夫环境可以通过不同的环境记忆时间来改变混沌的产生。作为比较,还讨论了从马尔可夫到非马尔可夫 regime 的交叉特性。我们的研究结果表明,量子记忆对混沌起始的影响可能成为量子操纵和控制中一个值得研究的有用特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bd7/11431584/5045f7591c91/entropy-26-00742-g001.jpg

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