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Proposal for Entangling Remote Micromechanical Oscillators via Optical Measurements

机译:通过光学测量纠缠远程微机械振荡器的提案

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We propose an experiment to create and verify entanglement between remote mechanical objects by use of an optomechanical interferometer. Two optical cavities, each coupled to a separate mechanical oscillator, are coherently driven such that the oscillators are laser cooled to the quantum regime. The entanglement is induced by optical measurement and comes about by combining the output from the two cavities to erase which-path information. It can be verified through measurements of degrees of second-order coherence of the optical output field. The experiment is feasible in the regime of weak optomechanical coupling. Realistic parameters for the membrane-in-the-middle geometry suggest entangled state lifetimes on the order of milliseconds.
机译:我们提出了一个通过使用光机械干涉仪来创建和验证远程机械物体之间纠缠的实验。相干地驱动分别耦合到单独的机械振荡器的两个光学腔,使得振荡器被激光冷却至量子态。纠缠是由光学测量引起的,是通过合并两个腔体的输出以消除哪条路径信息而产生的。可以通过测量光输出场的二阶相干度来验证。该实验在弱光机耦合条件下是可行的。中间膜几何形状的实际参数表明,纠缠态的寿命大约为毫秒。

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