论文标题

二进制黑洞旋转分布可能会随红移而扩大

The binary black hole spin distribution likely broadens with redshift

论文作者

Biscoveanu, Sylvia, Callister, Thomas A., Haster, Carl-Johan, Ng, Ken K. Y., Vitale, Salvatore, Farr, Will

论文摘要

使用引力波观察到的二元黑洞(BBH)质量,旋转和红移的种群级分布可以阐明这些系统的形成和发展方式。由于塑造了被推断的BBH种群的复杂的天体物理过程,因此需要在这些参数之间建立相关性的模型才能充分表征这些来源。我们通过分层分析Ligo和处女座检测到的BBH种群,其模型允许有效排列自旋与主要质量和红移之间的相关性。我们发现,有效自旋分布的宽度在98.6%的可信度下增长。我们确定这种趋势在应用几个替代模型的应用下是可靠的,并另外验证了使用模拟人群假冒引入这种相关性。我们讨论了这种相关性可能是由于红移与红洞旋转分布的变化所致。

The population-level distributions of the masses, spins, and redshifts of binary black holes (BBHs) observed using gravitational waves can shed light on how these systems form and evolve. Because of the complex astrophysical processes shaping the inferred BBH population, models allowing for correlations among these parameters will be necessary to fully characterize these sources. We hierarchically analyze the BBH population detected by LIGO and Virgo with a model allowing for correlations between the effective aligned spin and the primary mass and redshift. We find that the width of the effective spin distribution grows with redshift at 98.6% credibility. We determine this trend to be robust under the application of several alternative models and additionally verify that such a correlation is unlikely to be spuriously introduced using a simulated population. We discuss the possibility that this correlation could be due to a change in the natal black hole spin distribution with redshift.

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