论文标题

测量原始黑洞合并在宇宙学距离上的特性:重力波中高阶模式的影响

Measuring properties of primordial black hole mergers at cosmological distances: effect of higher order modes in gravitational waves

论文作者

Ng, Ken K. Y., Goncharov, Boris, Chen, Shiqi, Borhanian, Ssohrab, Dupletsa, Ulyana, Franciolini, Gabriele, Branchesi, Marica, Harms, Jan, Maggiore, Michele, Riotto, Antonio, Sathyaprakash, B. S., Vitale, Salvatore

论文摘要

大爆炸后不久,原始的黑洞(PBH)可能是由于物质过度崩溃而形成的。可以通过观察到高红移$ z \ gtrsim 30 $合并PBH二进制物的重力波(GW)的排放来确定它们的存在,那里的天体物理二进制黑洞(BBH)不可能合并。下一代基于地面的GW探测器,宇宙探险家和爱因斯坦望远镜,将能够观察到总质量为$ \ Mathcal {O}(10-100)〜M _ {\ odot} $的BBH。本文是Arxiv:2108.07276的同伴论文,重点介绍了波形建模中高阶模式(HOMS)的影响,这对于这些高红移BBHS可能可检测到源参数的估计。我们执行贝叶斯参数估计,以在波形中获得有或没有HOM模型的测量不确定性,以供其总质量,质量比,轨道倾斜度和红移,由下一代GW检测器网络观察到。我们表明,在波形模型中包括HOMS会根据确切的源参数将红移和质量的不确定性降低到两倍。然后,我们讨论用改进的单事件测量值鉴定PBH的含义,并扩展对源自第一颗恒星和原始BBH合并的BBH合并之间相对丰度的模型依赖性的研究,如ARXIV:2108.07276所示。

Primordial black holes (PBHs) may form from the collapse of matter overdensities shortly after the Big Bang. One may identify their existence by observing gravitational wave (GW) emissions from merging PBH binaries at high redshifts $z\gtrsim 30$, where astrophysical binary black holes (BBHs) are unlikely to merge. The next-generation ground-based GW detectors, Cosmic Explorer and Einstein Telescope, will be able to observe BBHs with total masses of $\mathcal{O}(10-100)~M_{\odot}$ at such redshifts. This paper serves as a companion paper of arXiv:2108.07276, focusing on the effect of higher-order modes (HoMs) in the waveform modeling, which may be detectable for these high redshift BBHs, on the estimation of source parameters. We perform Bayesian parameter estimation to obtain the measurement uncertainties with and without HoM modeling in the waveform for sources with different total masses, mass ratios, orbital inclinations and redshifts observed by a network of next-generation GW detectors. We show that including HoMs in the waveform model reduces the uncertainties of redshifts and masses by up to a factor of two, depending on the exact source parameters. We then discuss the implications for identifying PBHs with the improved single-event measurements, and expand the investigation of the model dependence of the relative abundance between the BBH mergers originating from the first stars and the primordial BBH mergers as shown in arXiv:2108.07276.

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