论文标题
通过辅助机械耦合,多回能反馈光学制冷的百万倍
Millionfold improvement in multivibration-feedback optomechanical refrigeration via auxiliary mechanical coupling
论文作者
论文摘要
多个振动模式的同时地基态冷藏是观察多振动系统的显着量子效应的先决条件。在这里,我们提出了如何基于空腔验光力学的净冻结速率进行大量扩增,并在很大程度上改善了超出解决方带条件的多次启动模式的冷却性能。通过在两个机械振动之间使用辅助机械耦合(AMC),黑暗模式是通过这些振动模式与通用光学模式耦合并切断冷却通道所诱导的,可以完全删除。我们对有效的机械敏感性和净冷却速率使用完全分析的处理,并发现AMC打开时,可以观察到净 - 冷冻率的放大六个以上的数量级。特别是,我们揭示了超出解决方案策略的同时基于地面的冷却,这是由引入的AMC引起的,没有它消失。我们的工作为在不良炉灶制度中多种振动模式的量子控制铺平了道路。
The simultaneous ground-state refrigeration of multiple vibrational modes is a prerequisite for observing significant quantum effects of multiple-vibration systems. Here we propose how to realize a large amplification in the net-refrigeration rates based on cavity optomechanics and to largely improve the cooling performance of multivibration modes beyond the resolved-sideband regime. By employing an auxiliary mechanical coupling (AMC) between two mechanical vibrations, the dark mode, which is induced by the coupling of these vibrational modes to a common optical mode and cuts off cooling channels, can be fully removed. We use fully analytical treatments for the effective mechanical susceptibilities and net-cooling rates and find that when the AMC is turned on, the amplification of the net-refrigeration rates by more than six orders of magnitude can be observed. In particular, we reveal that the simultaneous ground-state cooling beyond the resolved-sideband regime arises from the introduced AMC, without which it vanishes. Our work paves the way for quantum control of multiple vibrational modes in the bad-cavity regime.