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首页> 外文期刊>Physical Review, A >Nonreciprocal quantum-state conversion between microwave and optical photons
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Nonreciprocal quantum-state conversion between microwave and optical photons

机译:微波和光学光子之间的非探测量子 - 状态转换

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Optoelectromechanical quantum interfaces can be utilized to connect systems with distinctively different frequencies in hybrid quantum networks. Here we present a scheme of nonreciprocal quantum-state conversion between microwave and optical photons via an optoelectromechanical interface. By introducing an auxiliary cavity and manipulating the phase differences between the linearized light-matter couplings, unidirectional state transmission that is immune to mechanical noise can be achieved. This interface can function as an isolator, a circulator, and a two-way switch that routes the input state to a designated output channel. We show that under a generalized impedance matching condition the state conversion can prevent thermal fluctuations of the mechanical mode from propagating to the cavity outputs and reach high fidelity. The realization of this scheme is also discussed.
机译:光电机械量子接口可用于连接混合量子网络中具有独特不同频率的系统。 在这里,我们通过光电机械界面介绍了微波和光学光子之间的非探测量子状态转换的方案。 通过引入辅助腔并操纵线性化的光物质联轴器之间的相位差,可以实现免受机械噪声的单向状态传动。 该接口可以用作隔离器,循环器和双向开关,该开关将输入状态路由到指定的输出通道。 我们表明,在广义阻抗匹配状态下,状态转换可以防止机械模式的热波动传播到腔输出并达到高保真度。 还讨论了该方案的实现。

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