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首页> 外文期刊>International Journal of Theoretical Physics: A Journal of Original Research and Reviews in Theoretical Physics and Related Mathematics, Dedicated to the Unification of Physics >Precision Mass Sensing by Tunable Double Optomechanically Induced Transparency with Squeezed Field in a Coupled Optomechanical System
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Precision Mass Sensing by Tunable Double Optomechanically Induced Transparency with Squeezed Field in a Coupled Optomechanical System

机译:耦合光学系统中挤压场的可调谐双光机诱导透明度精度

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摘要

We present a scheme for all-optical precision mass sensing with squeezed field in a system consisting of an optomechanical cavity coupled to a charged nanomechanical resonator (NAMR) in terms of tunable double optomechanically induced transparency (OMIT). We demonstrate that the accreted mass landing on NAMR can be achieved by measuring the splitting of the two transparency windows of the double OMIT. Moreover, our work shows this scheme for the quantized fields can be robust against temperature and cavity decay in somehow. Specifically, the precision measurement is from the noise spectrum, for these reasons, our scheme may provide a new paradigm for precision measurement based on the noise in the optomechanical system.
机译:我们在由可调谐双光机诱导的透明度(省略)方面,由耦合到带电的纳米机械谐振器(NAMR)的光机械腔内的挤压场中的所有光学精密质量感测的方案。 我们证明通过测量双兆尺寸的两个透明窗口的分裂来实现Namr上的凸起的质量降落。 此外,我们的工作表明,该方案的量化场可以在不知何故处于稳健的温度和腔衰减。 具体地,由于这些原因,精密测量来自噪声频谱,我们的方案可以基于光学机械系统中的噪声来提供一种新的视范例。

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