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首页> 外文期刊>Physical Review, A >Directional amplifier in an optomechanical system with optical gain
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Directional amplifier in an optomechanical system with optical gain

机译:具有光学增益的光学机械系统中的方向放大器

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Directional amplifiers are crucial nonreciprocal devices in both classical and quantum information processing. Here we propose a scheme for realizing a directional amplifier between optical and microwave fields based on an optomechanical system with optical gain, where an active optical cavity and two passive microwave cavities are coupled to a common mechanical resonator via radiation pressure. The two passive cavities are coupled via hopping interaction to facilitate the directional amplification between the active and passive cavities. We obtain the condition of achieving optical directional amplification and find that the direction of amplification can be controlled by the phase differences between the effective optomechanical couplings. The effects of the gain rate of the active cavity and the effective coupling strengths on the maximum gain of the amplifier are discussed. We show that the noise added to this amplifier can be greatly suppressed in the large cooperativity limit.
机译:定向放大器是经典和量子信息处理中的关键非蓄能器件。 在这里,我们提出了一种基于具有光学增益的光学机械系统实现光学和微波场之间的方向放大器的方案,其中有源光学腔和两个被动微波腔通过辐射压力耦合到公共机械谐振器。 两个被动腔通过跳跃相互作用耦合,以便于主动和被动腔之间的方向放大。 我们获得实现光学方向放大的条件,并发现放大方向可以通过有效光机械联轴器之间的相位差来控制。 讨论了主腔的增益率和有效耦合强度对放大器的最大增益的影响。 我们表明,在大的合作极限中,可以大大抑制添加到该放大器的噪声。

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