论文标题
检测悬浮的腔体光学机械中的非经典相关性
Detecting nonclassical correlations in levitated cavity optomechanics
论文作者
论文摘要
非经典的光学机械相关性可以超出经典驾驶的局限性机械运动的光学控制。在这里,我们研究了在现实情况下使用脉冲腔 - 局限学来创建和验证光线与悬浮纳米颗粒运动之间的非经典相位敏感相关性。我们表明,即使在最先进的实验设置的温度升高,光力学的两模式挤压也可以持续。我们介绍了基于光学同源的检测方案,该方案允许在没有完全光学机械状态层析成像的情况下揭示非经典相关性。我们使用分辨率边带机制中的旋转波近似(RWA)提供了分析处理,并通过Lyapunov方程的完整数值解决方案证明了其有效性。我们基于当前实验的参数进行分析,并得出结论,今天可以观察到非古典相关性。
Nonclassical optomechanical correlations enable optical control of mechanical motion beyond the limitations of classical driving. Here we investigate the feasibility of using pulsed cavity-optomechanics to create and verify nonclassical phase-sensitive correlations between light and the motion of a levitated nanoparticle in a realistic scenario. We show that optomechanical two-mode squeezing can persist even at the elevated temperatures of state-of-the-art experimental setups. We introduce a detection scheme based on optical homodyning that allows revealing nonclassical correlations without full optomechanical state tomography. We provide an analytical treatment using the rotating wave approximation (RWA) in the resolved-sideband regime and prove its validity with a full numerical solution of the Lyapunov equation beyond the RWA. We build on parameters of current experiments for our analysis and conclude that the observation of nonclassical correlations is possible today.