Irreversibility in an Optical Parametric Driven Optomechanical System

Author:

Abah Obinna1ORCID,Edet Collins O.2,Ali Norshamsuri3,Teklu Berihu45,Asjad Muhammad4

Affiliation:

1. School of Mathematics, Statistics, and Physics Newcastle University Newcastle upon Tyne NE1 7RU UK

2. Institute of Engineering Mathematics Universiti Malaysia Perlis Arau Perlis 02600 Malaysia

3. Advanced Communication Engineering (ACE) Centre of Excellence Universiti Malaysia Perlis Kangar Perlis 01000 Malaysia

4. Department of Mathematics Khalifa University Abu Dhabi 127788 United Arab Emirates

5. Center for Cyber‐Physical Systems (C2PS) Khalifa University Abu Dhabi 127788 United Arab Emirates

Abstract

AbstractThis study investigates the role of nonlinearity via optical parametric oscillator on the entropy production rate and quantum correlations in a hybrid optomechanical system. Specifically, the modified entropy production rate of an optical parametric oscillator placed in the optomechanical cavity is derived, which is well described by the two‐mode Gaussian state. The irreversibility and quantum mutual information associated with the driving the system far from equilibrium are found to be controlled by the phase and strength of nonlinearity. This analysis shows that the system entropy flow, heating, or cooling, are determined by choosing the appropriate phase of the self‐induced nonlinearity. It is further demonstrated that this effect persists for a reasonable range of cavity decay rate.

Funder

Khalifa University of Science, Technology and Research

Ministry of Higher Education, Malaysia

Newcastle University

Publisher

Wiley

Subject

General Physics and Astronomy

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