论文标题

在量子射击噪声下方暴露重力波

Exposing Gravitational Waves below the Quantum Shot Noise

论文作者

Yu, Hang, Martynov, Denis, Adhikari, Rana X, Chen, Yanbei

论文摘要

地面重力波(GW)探测器的敏感性受到数百Hertz及以上的量子射击噪声的限制。但是,可以使用Martynov等人提出的量子相关技术。 [物理。 Rev. A 95,043831(2017)]消除了射击噪声的期望值,从而在GW干涉仪的反对称端口中交叉相交的两个输出形成的交叉频谱中暴露了基本的经典信号。我们在这里探索前景,并分析使用量子相关性检测天体物理GW信号的敏感性。从概念上讲,该技术类似于两个不同GW检测器的相关性,因为它利用了两个输出中GW信号将相关的事实,但射击噪声将不相关。量子相关也具有其独特的优势,因为它仅需要一个干涉仪即可进行检测。因此,量子相关性可以提高占空比,提高搜索效率并实现高度极化信号的检测。特别是,我们表明量子相关对于检测短($ <1 \,{\ rm s} $)和中间($ \ sim 10-10^4 \,{\ rm s} $)的二进制中子星的遗迹特别有用。

The sensitivities of ground-based gravitational-wave (GW) detectors are limited by quantum shot noise at a few hundred Hertz and above. Nonetheless, one can use a quantum-correlation technique proposed by Martynov, et al. [Phys. Rev. A 95, 043831 (2017)] to remove the expectation value of the shot noise, thereby exposing underlying classical signals in the cross spectrum formed by cross-correlating the two outputs in a GW interferometer's anti-symmetric port. We explore here the prospects and analyze the sensitivity of using quantum correlation to detect astrophysical GW signals. Conceptually, this technique is similar to the correlation of two different GW detectors as it utilizes the fact that a GW signal will be correlated in the two outputs but the shot noise will be uncorrelated. Quantum correlation also has its unique advantages as it requires only a single interferometer to make a detection. Therefore, quantum correlation could increase the duty cycle, enhance the search efficiency, and enable the detection of highly polarized signals. In particular, we show that quantum correlation could be especially useful for detecting post-merger remnants of binary neutron stars with both short ($< 1\,{\rm s}$) and intermediate ($\sim 10-10^4\,{\rm s}$) durations and setting upper limits on continuous emissions from unknown pulsars.

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