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Quantum noise in laser-interferometer gravitational-wave detectors with a heterodyne readout scheme

机译:具有外差读数方案的激光干涉仪重力波探测器中的量子噪声

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摘要

We analyze and discuss the quantum noise in signal-recycled laser interferometer gravitational-wave detectors, such as Advanced LIGO, using a heterodyne readout scheme and taking into account the optomechanical dynamics. Contrary to homodyne detection, a heterodyne readout scheme can simultaneously measure more than one quadrature of the output field, providing an additional way of optimizing the interferometer sensitivity, but at the price of additional noise. Our analysis provides the framework needed to evaluate whether a homodyne or heterodyne readout scheme is more optimal for second generation interferometers from an astrophysical point of view. As a more theoretical outcome of our analysis, we show that as a consequence of the Heisenberg uncertainty principle the heterodyne scheme cannot convert conventional interferometers into (broadband) quantum non-demolition interferometers.
机译:我们使用外差读数方案并考虑了光机械动力学,分析并讨论了信号循环激光干涉仪重力波探测器(例如Advanced LIGO)中的量子噪声。与零差检测相反,外差读数方案可以同时测量输出场的一个以上正交信号,从而提供了一种优化干涉仪灵敏度的额外方法,但代价是额外的噪声。我们的分析提供了从天体物理学的角度评估第二代干涉仪的零差或外差读数方案是否更理想所需的框架。作为我们分析的更理论上的结果,我们表明,由于海森堡不确定性原理的影响,外差方案无法将传统的干涉仪转换为(宽带)量子非拆卸干涉仪。

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