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Selective Linear or Quadratic Optomechanical Coupling via Measurement

机译:通过测量进行的选择性线性或二次光机耦合

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The ability to engineer both linear and nonlinear coupling with a mechanical resonator is an important goal for the preparation and investigation of macroscopic mechanical quantum behavior. In this work, a measurement based scheme is presented where linear or square mechanical-displacement coupling can be achieved using the optomechanical interaction that is linearly proportional to the mechanical position. The resulting square-displacement measurement strength is compared to that attainable in the dispersive case that has a direct interaction with the mechanical-displacement squared. An experimental protocol and parameter set are discussed for the generation and observation of non-Gaussian states of motion of the mechanical element.
机译:利用机械谐振器设计线性和非线性耦合的能力是制备和研究宏观机械量子行为的重要目标。在这项工作中,提出了一种基于测量的方案,其中可以使用与机械位置成线性比例的光机械相互作用来实现线性或方形机械位移耦合。将所得的平方位移测量强度与在分散情况下与机械位移平方具有直接相互作用的分散强度测量强度进行比较。讨论了用于生成和观察机械元件运动的非高斯运动状态的实验协议和参数集。

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