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Entangling optical and microwave cavity modes by means of a nanomechanical resonator

机译:通过纳米机械谐振器纠缠光学和微波腔模

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摘要

We propose a scheme that is able to generate stationary continuous-variable entanglement between an optical and a microwave cavity mode by means of their common interaction with a nanomechanical resonator. We show that when both cavities are intensely driven, one can generate bipartite entanglement between any pair of the tripartite system, and that, due to entanglement sharing, optical-microwave entanglement is efficiently generated at the expense of microwave-mechanical and optomechanical entanglement.
机译:我们提出了一种方案,该方案能够通过它们与纳米机械谐振器的共同相互作用而在光学和微波腔模之间产生平稳的连续变量纠缠。我们显示出,当强烈驱动两个腔时,一个腔可以在任何一对三方系统之间生成二分纠缠,并且由于纠缠共享,光-微波纠缠有效地产生,但以微波机械纠缠和光机械纠缠为代价。

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