Sheng Jiteng, Yang Cheng, Wu Haibin
State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai 200062, China.
Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China.
Fundam Res. 2022 Sep 19;3(1):75-86. doi: 10.1016/j.fmre.2022.09.005. eCollection 2023 Jan.
Classical thermodynamics has been a great achievement in dealing with systems that are in equilibrium or near equilibrium. As an emerging field, nonequilibrium thermodynamics provides a general framework for understanding the nonequilibrium processes, particularly in small systems that are typically far-from-equilibrium and are dominated by thermal or quantum fluctuations. Cavity optomechanical systems hold great promise among the various experimental platforms for studying nonequilibrium thermodynamics owing to their high controllability, excellent mechanical performance, and ability to operate deep in the quantum regime. Here, we present an overview of the recent advances in nonequilibrium thermodynamics with cavity optomechanical systems. The experimental results in entropy production assessment, fluctuation theorems, heat transfer, and heat engines are highlighted.
经典热力学在处理处于平衡或接近平衡的系统方面取得了巨大成就。作为一个新兴领域,非平衡热力学为理解非平衡过程提供了一个通用框架,特别是在那些通常远离平衡且受热涨落或量子涨落主导的小系统中。由于其高可控性、出色的机械性能以及在量子领域深入运行的能力,腔光机械系统在研究非平衡热力学的各种实验平台中具有巨大潜力。在此,我们概述了腔光机械系统在非平衡热力学方面的最新进展。重点介绍了熵产生评估、涨落定理、热传递和热机方面的实验结果。