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Enhancing a slow and weak optomechanical nonlinearity with delayed quantum feedback

机译:通过延迟的量子反馈增强慢而弱的光机械非线性

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摘要

A central goal of quantum optics is to generate large interactions between single photons so that one photon can strongly modify the state of another one. In cavity optomechanics, photons interact with the motional degrees of freedom of an optical resonator, for example, by imparting radiation pressure forces on a movable mirror or sensing minute fluctuations in the position of the mirror. Here, we show that the optical nonlinearity arising from these effects, typically too small to operate on single photons, can be sufficiently enhanced with feedback to generate large interactions between single photons. We propose a protocol that allows photons propagating in a waveguide to interact with each other through multiple bounces off an optomechanical system. The protocol is analysed by evolving the full many-body quantum state of the waveguide-coupled system, illustrating that large photon–photon interactions mediated by mechanical motion may be within experimental reach.
机译:量子光学的主要目标是在单个光子之间产生较大的相互作用,以便一个光子可以强烈地改变另一个光子的状态。在腔体光力学中,光子与光学谐振器的运动自由度相互作用,例如,通过在可移动反射镜上施加辐射压力或感测反射镜位置的微小波动。在这里,我们表明,由这些效应引起的光学非线性(通常太小而无法在单个光子上运行)可以通过反馈得到充分增强,从而在单个光子之间产生较大的相互作用。我们提出了一种协议,该协议允许光子在波导中传播,并通过光机械系统的多次反射相互相互作用。通过演化波导耦合系统的完整多体量子态来分析该协议,从而说明机械运动介导的大光子-光子相互作用可能在实验范围之内。

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