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.
Sci Adv. 2021 Dec 10;7(50):eabl7740. doi: 10.1126/sciadv.abl7740. Epub 2021 Dec 8.
We report an experimental demonstration of a coupled-mode heat engine in a two-membrane-in-the-middle cavity optomechanical system. The normal mode of the cavity-mediated strongly coupled nanoresonators is used as the working medium, and an Otto cycle is realized by extracting work between two phononic thermal reservoirs. The heat engine performance is characterized in both normal mode and bare mode pictures, which reveals that the correlation of two membranes plays a substantial role during the thermodynamic cycle. Moreover, a straight-twin nanomechanical engine is implemented by engineering the normal modes and operating two cylinders out of phase. Our results demonstrate an essential class of heat engine in cavity optomechanical systems and provide an ideal platform platform for investigating heat engines of interacting subsystems in small scales with controllability and scalability.
我们报告了在中间有两个膜的腔光机械系统中耦合模式热机的实验演示。腔介导的强耦合纳米谐振器的正常模式用作工作介质,通过在两个声子热库之间提取功来实现奥托循环。在正常模式和裸模式图像中对热机性能进行了表征,这表明两个膜的相关性在热力学循环中起着重要作用。此外,通过设计正常模式并使两个气缸异相运行,实现了一个直列双纳米机械发动机。我们的结果展示了腔光机械系统中一类重要的热机,并为在小尺度下可控且可扩展地研究相互作用子系统的热机提供了一个理想平台。