Perturbation theoretical approach to determine optomechanical entanglement in mirror-field systems

S. Chiangga, T. Sunpatanon, T. Frank
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Abstract

An analytical method is developed that can be applied to a large variety of optomechanical systems to study entanglement between two subsystems of interest. The method is based on a system parameter that can be considered as perturbation parameter. It is shown that the method allows researchers to draw both qualitative and quantitative conclusions about the perturbation parameter at hand. First, the conclusion can be drawn whether or not the parameter when scaled up slightly induces entanglement between the subsystems. Second, physical insights into the role of model parameters for the emergence of entanglement can be obtained based on the perturbation theoretical analytical expressions. Third, quantitative predictions of numerical simulations that so far dominate the literature in the field of optomechanical entanglement can be validated at least in the limit of the vanishing perturbation parameter.
确定镜射系统中光机械纠缠的佯动理论方法
本文提出了一种分析方法,可应用于多种光学机械系统,以研究两个相关子系统之间的纠缠。该方法基于一个可视为扰动参数的系统参数。研究表明,该方法允许研究人员就手头的扰动参数得出定性和定量结论。首先,可以得出当该参数稍微放大时是否会诱发子系统之间的纠缠的结论。其次,根据扰动理论分析表达式,可以获得模型参数对纠缠出现的作用的物理启示。第三,至少在扰动参数消失的限度内,可以验证迄今为止在光机械纠缠领域占主导地位的数值模拟的定量预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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