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利用不稳定光机械滤波器提高引力波探测器的带宽

Enhancing the Bandwidth of Gravitational-Wave Detectors with Unstable Optomechanical Filters.

作者信息

Miao Haixing, Ma Yiqiu, Zhao Chunnong, Chen Yanbei

机构信息

School of Physics and Astronomy, University of Birmingham, Birmingham B15 2TT, United Kingdom.

School of Physics, University of Western Australia, Western Australia 6009, Australia.

出版信息

Phys Rev Lett. 2015 Nov 20;115(21):211104. doi: 10.1103/PhysRevLett.115.211104. Epub 2015 Nov 17.

Abstract

Advanced interferometric gravitational-wave detectors use optical cavities to resonantly enhance their shot-noise-limited sensitivity. Because of positive dispersion of these cavities-signals at different frequencies pick up different phases, there is a tradeoff between the detector bandwidth and peak sensitivity, which is a universal feature for quantum measurement devices having resonant cavities. We consider embedding an active unstable filter inside the interferometer to compensate the phase, and using feedback control to stabilize the entire system. We show that this scheme in principle can enhance the bandwidth without sacrificing the peak sensitivity. However, the unstable filter under our current consideration is a cavity-assisted optomechanical device operating in the instability regime, and the thermal fluctuation of the mechanical oscillator puts a very stringent requirement on the environmental temperature and the mechanical quality factor.

摘要

先进的干涉引力波探测器利用光学腔来共振增强其散粒噪声限制的灵敏度。由于这些腔的正色散——不同频率的信号获得不同的相位,在探测器带宽和峰值灵敏度之间存在权衡,这是具有共振腔的量子测量装置的一个普遍特征。我们考虑在干涉仪内部嵌入一个有源不稳定滤波器来补偿相位,并使用反馈控制来稳定整个系统。我们表明,该方案原则上可以在不牺牲峰值灵敏度的情况下提高带宽。然而,我们目前考虑的不稳定滤波器是一个在不稳定区域运行的腔辅助光机械装置,机械振荡器的热涨落对环境温度和机械品质因数提出了非常严格的要求。

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