论文标题

$χ_\ mathrm {eff} -z $ field二进制黑洞合并的相关性以及3G引力波检测器如何限制它

The $χ_\mathrm{eff}-z$ correlation of field binary black hole mergers and how 3G gravitational-wave detectors can constrain it

论文作者

Bavera, Simone S., Fishbach, Maya, Zevin, Michael, Zapartas, Emmanouil, Fragos, Tassos

论文摘要

了解合并二进制黑洞的起源目前是天体物理学中最紧迫的任务之一。我们表明,如果孤立的二进制进化主导了合并二进制黑洞的形成机制,则应期望有效的旋转参数,$χ_\ mathrm {eff} $与合并的$ z $,$ z $,$ z $,$ z $,二进制黑孔的相关性。这种相关性来自潮汐旋转系统,因为由于其降低的风质量损耗率降低,延迟的膨胀速度降低,并且在超级恒星相比,与较高的金属性相比,高金属性恒星的弱轨道膨胀降低,延迟的最大半径较小,因此优先形成和在较高的红移下形成和合并。结果,这些紧密绑定的系统与灵感时代短。鉴于我们的孤立二进制进化的基准模型,我们表明,在可检测的Ligo-virgo-virgo二进制黑洞中,$χ_\ Mathrm {eff} -z $相关的起源与内在人群不同,只有在未来才能在第三代重力探测者(例如EinStein telescope和Roscope)访问的情况下才能访问。最后,我们将模型预测与基于当前二进制黑洞合并目前目录的人群预测进行了比较,发现当前数据有利于$χ_\ mathrm {eff} -z $的正相关性,如我们的孤立二进制进化模型所预测的。

Understanding the origin of merging binary black holes is currently one of the most pressing quests in astrophysics. We show that if isolated binary evolution dominates the formation mechanism of merging binary black holes, one should expect a correlation between the effective spin parameter, $χ_\mathrm{eff}$, and the redshift of the merger, $z$, of binary black holes. This correlation comes from tidal spin-up systems preferentially forming and merging at higher redshifts due to the combination of weaker orbital expansion from low metallicity stars given their reduced wind mass loss rate, delayed expansion and have smaller maximal radii during the supergiant phase compared to stars at higher metallicity. As a result, these tightly bound systems merge with short inspiral times. Given our fiducial model of isolated binary evolution, we show that the origin of a $χ_\mathrm{eff}-z$ correlation in the detectable LIGO--Virgo binary black hole population is different from the intrinsic population, which will become accessible only in the future by third-generation gravitational-wave detectors such as Einstein Telescope and Cosmic Explorer. Finally, we compare our model predictions with population predictions based on the current catalog of binary black hole mergers and find that current data favor a positive correlation of $χ_\mathrm{eff}-z$ as predicted by our model of isolated binary evolution.

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