论文标题
微波光学机电的电路模型
Electric circuit model of microwave optomechanics
论文作者
论文摘要
我们报告了描述标准单色调微波光学机械的通用经典电路建模。基于平行的RLC电路,其中机械振荡器充当可移动电容器,提出了分析表达式的推导,包括关键特征,例如背部功能,输入输出表达式和相关的光谱密度,所有这些都在经典状态中。这些表达式与当腔和机械振荡器的职业数量较大时,在光学机械中进行的标准量子处理一致。此外,衍生的分析将光学元素和特性转化为电子术语,这是必须进行定量测量和设计目的的。最后,标准量子处理与经典模型之间的直接比较解决了量子和经典制度之间的边界,突出了真正量子的特征,而不是量子。
We report on the generic classical electric circuit modeling that describes standard single-tone microwave optomechanics. Based on a parallel RLC circuit in which a mechanical oscillator acts as a movable capacitor, derivations of analytical expressions are presented, including key features such as the back-action force, the input-output expressions, and the spectral densities associated, all in the classical regime. These expressions coincide with the standard quantum treatment performed in optomechanics when the occupation number of both cavity and mechanical oscillator are large. Besides, the derived analytics transposes optical elements and properties into electronics terms, which is mandatory for quantitative measurement and design purposes. Finally, the direct comparison between the standard quantum treatment and the classical model addresses the bounds between quantum and classical regimes, highlighting the features which are truly quantum, and those which are not.