论文标题
使用重力波瞬态目录3旋转黑洞的种群特性3
The population properties of spinning black holes using Gravitational-wave Transient Catalog 3
论文作者
论文摘要
预计通过不同途径形成的二进制黑洞具有独特的自旋特性。用重力波测量这些特性为揭示二进制黑洞起源的机会提供了机会。最近的工作得出了关于Ligo-virgo-kagra(LVK)观察到的自旋分布的结论矛盾。一些分析表明,相对于轨道角动量,观察到的黑孔自旋矢量的一部分显着未对准($> 90^\ Circ $)。这被解释为意味着LVK数据集中的某些二进制文件在密集的恒星环境中动态组装。其他分析发现了对二进制的亚种群的支持,旋转可忽略不计,没有明显未对准的自旋的证据 - 这与现场形成相一致。在这项工作中,我们研究了第三LVK重力波瞬态目录中二元黑洞的自旋特性。我们发现,没有足够的数据来解决具有可忽略的黑洞自旋的二进制组的亚种群的存在(该亚群的存在由适度的贝叶斯因子为1.7)。我们发现对存在具有极端自旋倾斜角$> 90^\ circ $的合并的支持(极端倾斜二进制文件的存在受到贝叶斯因子为10.1的偏爱)。只有一件事很清楚:至少在该领域形成的LVK二进制文件。最多$ 89 \%$的二进制文件是动态组装的(99 \%的可信度),但是,真正的分支分数可能要低得多,甚至可以忽略不计。
Binary black holes formed via different pathways are predicted to have distinct spin properties. Measuring these properties with gravitational waves provides an opportunity to unveil the origins of binary black holes. Recent work draws conflicting conclusions regarding the spin distribution observed by LIGO--Virgo--KAGRA (LVK). Some analyses suggest that a fraction of the observed black-hole spin vectors are significantly misaligned (by $>90^\circ$) relative to the orbital angular momentum. This has been interpreted to mean that some binaries in the LVK dataset are assembled dynamically in dense stellar environments. Other analyses find support for a sub-population of binaries with negligible spin and no evidence for significantly misaligned spin -- a result consistent with the field formation scenario. In this work, we study the spin properties of binary black holes in the third LVK gravitational-wave transient catalog. We find that there is insufficient data to resolve the existence of a sub-population of binaries with negligible black-hole spin (the presence of this sub-population is supported by a modest Bayes factor of 1.7). We find modest support for the existence of mergers with extreme spin tilt angles $> 90^\circ$ (the presence of extreme-tilt binaries is favored by a Bayes factor of 10.1). Only one thing is clear: at least some of the LVK binaries formed in the field. At most $89\%$ of binaries are assembled dynamically (99\% credibility), though, the true branching fraction could be much lower, even negligible.