论文标题

与地面检测器的天体物理和宇宙随机重力波背景的同时估计

Simultaneous estimation of astrophysical and cosmological stochastic gravitational-wave backgrounds with terrestrial detectors

论文作者

Martinovic, Katarina, Meyers, Patrick M., Sakellariadou, Mairi, Christensen, Nelson

论文摘要

最近的晚期Ligo和晚期处女座关节观察跑步并未声称具有随机的重力波背景检测,但是人们期望随着检测器的灵敏度的提高,这种情况会改变。声称真正检测的挑战将立即因将信号与对此有助于的来源联系起来的困难。在本文中,我们考虑了包含紧凑型二元合并和其他宇宙学来源的背景,并在这些背景上设置了同时的上限。我们发现,以设计敏感性运行的高级LIGO,高级处女座网络将不允许分离我们考虑的来源。对大多数单独的紧凑型二元合并敏感的第三代探测器可以通过减去各个来源来减少天体物理信号,并可能揭示宇宙学背景。我们的贝叶斯分析表明,假设一个包含宇宙探险家和爱因斯坦望远镜的探测器网络以及单个源减法的合理水平,我们可以检测宇宙学信号$ω_ {\ rm {cs}}}}}(25 \,\,\ rm {hz}) $ω_ {\ rm bpl}(25 \,\ rm {hz})= 2.2 \ times 10^{ - 13} $,用于早期宇宙相位过渡的断开功率定律模型。

The recent Advanced LIGO and Advanced Virgo joint observing runs have not claimed a stochastic gravitational-wave background detection, but one expects this to change as the sensitivity of the detectors improves. The challenge of claiming a true detection will be immediately succeeded by the difficulty of relating the signal to the sources that contribute to it. In this paper, we consider backgrounds that comprise compact binary coalescences and additional cosmological sources, and we set simultaneous upper limits on these backgrounds. We find that the Advanced LIGO, Advanced Virgo network, operating at design sensitivity, will not allow for separation of the sources we consider. Third generation detectors, sensitive to most individual compact binary mergers, can reduce the astrophysical signal via subtraction of individual sources, and potentially reveal a cosmological background. Our Bayesian analysis shows that, assuming a detector network containing Cosmic Explorer and Einstein Telescope and reasonable levels of individual source subtraction, we can detect cosmological signals $Ω_{\rm{CS}} (25\,\rm{Hz})=4.5 \times 10^{-13}$ for cosmic strings, and $Ω_{\rm BPL}(25\,\rm{Hz})= 2.2 \times 10^{-13}$ for a broken power law model of an early universe phase transition.

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