论文标题

第三代重力波检测器的重力波镜头对紧凑型暗物质的限制

Constraints on compact dark matter from lensing of gravitational waves for the third-generation gravitational wave detector

论文作者

Zhou, Huan, Li, Zhengxiang, Liao, Kai, Huang, Zhiqi

论文摘要

由于Ligo-Virgo检测到了二进制黑洞(BBH)的第一个引力波(GW)事件,因此GWS已成为对天体物理学和宇宙学的有用探针。如果紧凑的暗物质(DM)对象,例如原始黑洞在宽大的质量范围内贡献了很大一部分的暗物质,它们将在GW信号中进行微透明,其长波长与天体物理物体的电磁信号的镜头效应不同。在本文中,我们将GW从BBH的镜头效应应用于对Cosmic Explorer的丰度(第三代基于地面GW检测器)的限制。首先,我们考虑了两个BBH形成的渠道,这些渠道有助于低红移GW来源,包括天体物理学来源BBH场景和原始起源BBH场景。其次,与光学深度的方法相比,我们使用贝叶斯分析来得出对紧凑型DM的限制,并考虑了不同的镜头质量功能。对于以$ 1000 $检测到的BBH的GW事件的无效搜索,我们发现,在质量范围$ \ geq500〜m _ {\ odot} $ $ 68 \%$ pusitivus cupturate pusitive级别的质量范围$ \ geq500〜m _ {\ odot} $中,紧凑型DM的丰度可以限制在$ \ simsim0.1 \%$中。此外,如果由紧凑型DM对象带有$ m _ {\ rm l} \ in [100〜m _ {\ odot},300〜M _ {\ odot}] $在$ 100 $中检测到BBH的GW事件,我们可以从$ 1的估计中估算出$ 2的$ 2. $ 25.2 \%$在此质量范围内和贝叶斯分析。

Since the first gravitational wave (GW) event from binary black hole (BBH) was detected by LIGO-Virgo, GWs have become a useful probe on astrophysics and cosmology. If compact dark matter (DM) objects e.g. primordial black holes, contribute a significant fraction of dark matter at wide mass range, they will cause microlensing in the GW signals with long wavelengths that are distinct from the lensing effects of electromagnetic signals from astrophysical objects. In this paper, we apply the lensing effect of GW from BBH to derive constraints on the abundance of compact DM for the Cosmic Explorer, a third-generation ground-based GW detector. We firstly consider two channels of formation of BBH that contribute to low and high redshift GW sources, including the astrophysical origin BBH scenario, and the primordial origin BBH scenario. Secondly, comparing with the method of optical depth, we use the Bayesian analysis to derive constraints on the abundance of compact DM with different mass function of lens taken into consideration. For a null search with $1000$ detected GW events of BBH, we find that the abundance of compact DM could be constrained to $\lesssim0.1\%$ in the mass range $\geq500~M_{\odot}$ at $68\%$ confidence level. In addition, if a GW event lensed by a compact DM object with $M_{\rm l}\in[100~M_{\odot},300~M_{\odot}]$ is detected in $100$ detected GW events of BBH, we can derive that the estimation of the abundance of compact DM is from $2.3\%$ to $25.2\%$ in this mass range with the Bayesian analysis.

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