论文标题

超出线性近似的分解,空腔量子光学非线性和位置测量

Cavity quantum optomechanical nonlinearities and position measurement beyond the breakdown of the linearized approximation

论文作者

Clarke, Jack, Neveu, Pascal, Khosla, Kiran E., Verhagen, Ewold, Vanner, Michael R.

论文摘要

现在,几项光学机械实验正在进入备受追捧的非线性方案,即使对于低光水平,光学机械相互作用也很大。在这个制度中,可以实现新的量子现象和改善的性能,但是,需要捕获辐射压力相互作用的非线性和腔响应的相应理论形式,以解锁这些能力。在这里,我们开发了这样的非线性腔量子量子光学框架,然后我们用它来提出如何在线性化近似的分解之外执行位置测量。我们的建议利用了从单个与双同源的光学通用dyne检测,以获取印在光学振幅和相四倍体上的机械位置信息,并启用脉冲和连续的操作模式。这些空腔光学非线性现在正面临越来越多的实验,我们的框架将允许在例如。量子计量学,标准量子极限的探索以及量子测量和控制。

Several optomechanics experiments are now entering the highly sought nonlinear regime where optomechanical interactions are large even for low light levels. Within this regime, new quantum phenomena and improved performance may be achieved, however, a corresponding theoretical formalism of cavity quantum optomechanics that captures the nonlinearities of both the radiation-pressure interaction and the cavity response is needed to unlock these capabilities. Here, we develop such a nonlinear cavity quantum optomechanical framework, which we then utilize to propose how position measurement can be performed beyond the breakdown of the linearized approximation. Our proposal utilizes optical general-dyne detection, ranging from single to dual homodyne, to obtain mechanical position information imprinted onto both the optical amplitude and phase quadratures and enables both pulsed and continuous modes of operation. These cavity optomechanical nonlinearities are now being confronted in a growing number of experiments, and our framework will allow a range of advances to be made in e.g. quantum metrology, explorations of the standard quantum limit, and quantum measurement and control.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源