论文标题
多个机械谐振器的非肾脏地面冷却
Nonreciprocal ground-state cooling of multiple mechanical resonators
论文作者
论文摘要
多个退化或近定位机械模式与公共腔场模式的同时地基状态冷却已成为腔磁机械的出色挑战。这是因为这些机械模式形成的暗模式从空腔模式中解开,并防止通过腔模式的冷却通道从黑暗模式中提取能量。在这里,我们提出了一种通用且可靠的破坏模式的方法,以实现通过引入相位依赖性的声子交互的同时进行两种退化或非排效器机械模式的地面冷却,该模式用于形成循环耦合的配置。我们发现了两种机械模式的不对称冷却性能,并基于非近代能量传递机制阐述了这种现象,这导致了两种机械模式之间声子的方向流动。我们还将这种方法概括为冷却多种机械模式。这种冷却方案中的物理机制具有一般的有效性,可以扩展该方法以打破物理中的其他暗模式和暗态效应。
The simultaneous ground-state cooling of multiple degenerate or near-degenerate mechanical modes coupled to a common cavity-field mode has become an outstanding challenge in cavity optomechanics. This is because the dark modes formed by these mechanical modes decouple from the cavity mode and prevent extracting energy from the dark modes through the cooling channel of the cavity mode. Here we propose a universal and reliable dark-mode-breaking method to realize the simultaneous ground-state cooling of two degenerate or nondegenerate mechanical modes by introducing a phasedependent phonon-exchange interaction, which is used to form a loop-coupled configuration. We find an asymmetrical cooling performance for the two mechanical modes and expound this phenomenon based on the nonreciprocal energy transfer mechanism, which leads to the directional flow of phonons between the two mechanical modes. We also generalize this method to cool multiple mechanical modes. The physical mechanism in this cooling scheme has general validity and this method can be extended to break other dark-mode and dark-state effects in physics.