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Strong Optomechanical Squeezing of Light

机译:光的强光机械挤压

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We create squeezed light by exploiting the quantum nature of the mechanical interaction between laser light and a membrane mechanical resonator embedded in an optical cavity. The radiation-pressure shot noise (fluctuating optical force from quantum laser amplitude noise) induces resonator motion well above that of thermally driven motion. This motion imprints a phase shift on the laser light, hence correlating the amplitude and phase noise, a consequence of which is optical squeezing. We experimentally demonstrate strong and continuous optomechanical squeezing of 1.7±0.2??dB below the shot-noise level. The peak level of squeezing measured near the mechanical resonance is well described by a model whose parameters are independently calibrated and that includes thermal motion of the membrane with no other classical noise sources.
机译:我们通过利用激光与嵌入光腔中的膜机械谐振器之间的机械相互作用的量子性质来创建压缩光。辐射压散粒噪声(量子激光振幅噪声引起的光学力波动)引起的谐振器运动远高于热驱动运动。该运动在激光上施加了相移,因此使振幅和相位噪声相关,其结果是光学压缩。我们通过实验证明了在散粒噪声水平以下1.7±0.2?dB dB的强而连续的光机械压缩。通过一个模型可以很好地描述在机械共振附近测得的挤压峰值水平,该模型的参数是独立校准的,其中包括膜的热运动,而没有其他经典噪声源。

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