On the Primordial Binary Black Hole Mergings in LIGO-Virgo-Kagra Data

IF 0.6 4区 物理与天体物理 Q4 PHYSICS, PARTICLES & FIELDS
K. A. Postnov, N. A. Mitichkin
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引用次数: 2

Abstract

We briefly discuss a possible cosmological implication of the observed binary black hole mergings detected by LIGO-Virgo-Kagra collaboration (GWTC-3 catalogue) for the primordial black hole (PBH) formation in the early Universe. We show that the bumpy chirp mass distribution of the LVK BH + BH binaries can be fit with two distinct and almost equal populations: (1) astrophysical mergings from BH + BH formed in the modern Universe from evolution of massive binaries and (2) mergings of binary PBHs with initial log-normal mass distribution. We find that the PBH central mass (\({{M}_{c}} \simeq 30{{M}_{ \odot }}\)) and distribution width derived from the observed LVK chirp masses are almost insensitive to the assumed double PBH formation model. To comply with the observed LVK BH + BH merging rate, the CDM PBH mass fraction should be \({{f}_{{{\text{pbh}}}}} \sim {{10}^{{ - 3}}}\) but can be higher if PBH clustering is taken into account.

Abstract Image

关于LIGO Virgo Kagra数据中的原始二元黑洞合并
我们简要讨论了LIGO Virgo Kagra合作(GWTC-3目录)探测到的双星黑洞合并对早期宇宙中原始黑洞(PBH)形成的可能的宇宙学含义。我们证明,LVK BH+BH双星的颠簸啁啾质量分布可以与两个不同且几乎相等的种群相拟合:(1)大质量双星进化形成的现代宇宙中BH+BH的天体物理合并;(2)具有初始对数正态质量分布的双星PBH的合并。我们发现PBH中心质量(\({{M}_{c} {\simeq 30{{M}_{\dodot})和从观测到的LVK线性调频质量导出的分布宽度对假定的双PBH形成模型几乎不敏感。为了符合观察到的LVK BH+BH合并速率,CDM PBH质量分数应为\({{f}_{{\text{pbh}\{\sim{10}^{-3}}),但如果考虑pbh聚类,则可能更高。
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来源期刊
Physics of Particles and Nuclei
Physics of Particles and Nuclei 物理-物理:粒子与场物理
CiteScore
1.00
自引率
0.00%
发文量
116
审稿时长
6-12 weeks
期刊介绍: The journal Fizika Elementarnykh Chastits i Atomnogo Yadr of the Joint Institute for Nuclear Research (JINR, Dubna) was founded by Academician N.N. Bogolyubov in August 1969. The Editors-in-chief of the journal were Academician N.N. Bogolyubov (1970–1992) and Academician A.M. Baldin (1992–2001). Its English translation, Physics of Particles and Nuclei, appears simultaneously with the original Russian-language edition. Published by leading physicists from the JINR member states, as well as by scientists from other countries, review articles in this journal examine problems of elementary particle physics, nuclear physics, condensed matter physics, experimental data processing, accelerators and related instrumentation ecology and radiology.
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