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Engineering optomechanical normal modes for single-phonon transfer and entanglement preparation

机译:用于单声子传递和纠缠准备的工程光机法向模式

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We propose a scheme that exploits the effect of normal-mode splitting in a three-mode optomechanical system (OMS) to manipulate phonons in a single-excitation level. The three normal modes of the OMS are formed by coupling two mechanical modes to a cavity mode, which is driven by a strong red-detuned pump field via radiation pressure. It is shown that the Landau-Zener dynamics of the three-normal-mode configuration is versatile for quantum information engineering. Explicitly, we show that it is feasible to transfer a single phonon between two mechanical modes with distinct frequencies, and an entangled W state among the three modes can be prepared. The effect of damping is analyzed by numerical simulation, which confirms the validity of our proposal. (C) 2015 Optical Society of America
机译:我们提出了一种方案,该方案利用三模式光机械系统(OMS)中的正常模式分裂效应来在单激发级上操纵声子。 OMS的三种正常模式是通过将两个机械模式耦合到一个腔模式而形成的,该腔模式由强大的红色失谐泵浦场通过辐射压力驱动。结果表明,三正态模式配置的Landau-Zener动力学对于量子信息工程是通用的。明确地,我们表明在具有不同频率的两个机械模式之间转移单个声子是可行的,并且可以准备这三个模式之间的纠缠的W态。通过数值模拟分析了阻尼的影响,证实了我们建议的有效性。 (C)2015年美国眼镜学会

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