Chaos in Optomechanical Systems Coupled to a Non-Markovian Environment

Author:

Chen Pengju1,Yang Nan1,Couvertier Austen1,Ding Quanzhen1,Chatterjee Rupak2,Yu Ting1

Affiliation:

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

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

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.

Funder

ART020-Quantum Technologies Project

Publisher

MDPI AG

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