论文标题

开放量子光机械系统中的非平衡热力学和发电

Nonequilibrium thermodynamics and power generation in open quantum optomechanical systems

论文作者

Paulino, Paulo J., Lesanovsky, Igor, Carollo, Federico

论文摘要

腔光系统是将电磁能转化为机械工作的范式环境。与腔模式结合的原子的实验是在非平衡条件下实现的,这是由编码非热耗散动力学的现象学模型描述的,并且落在弱系统浴耦合框架之外。这一事实使他们的解释为量子引擎,例如,定义明确的效率的推导,非常具有挑战性。在这里,我们提供了开放量子腔原子系统的一致热力学描述。我们的方法利用了它们的非平衡性质,并达到了一个充满活力的平衡,从持续的消散热电流来完全可以解释。原子与空腔模式之间的相互作用可以进一步引起非平衡相变和新兴行为,并允许评估集体多体现象对发动机操作的影响。为了实现这一目标,我们分别定义了与弱和强量机电耦合有关的两个热力学极限。我们说明了集中在时间晶体引擎上的思想,并讨论发电,能源转换效率以及在这两个限制下的稳定行为的出现。

Cavity optomechanical systems are a paradigmatic setting for the conversion of electromagnetic energy into mechanical work. Experiments with atoms coupled to cavity modes are realized in nonequilibrium conditions, described by phenomenological models encoding non-thermal dissipative dynamics and falling outside the framework of weak system-bath couplings. This fact makes their interpretation as quantum engines, e.g., the derivation of a well-defined efficiency, quite challenging. Here, we present a consistent thermodynamic description of open quantum cavity-atom systems. Our approach takes advantage of their nonequilibrium nature and arrives at an energetic balance which is fully interpretable in terms of persistent dissipated heat currents. The interaction between atoms and cavity modes can further give rise to nonequilibrium phase transitions and emergent behavior and allows to assess the impact of collective many-body phenomena on the engine operation. To enable this, we define two thermodynamic limits related to a weak and to a strong optomechanical coupling, respectively. We illustrate our ideas focussing on a time-crystal engine and discuss power generation, energy-conversion efficiency, and emergence of metastable behavior in both limits.

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