论文标题
搜索通过GWTC-3中化学均匀进化形成的合并二元黑洞的候选者
Searching for candidates of coalescing binary black holes formed through chemically homogeneous evolution in GWTC-3
论文作者
论文摘要
Ligo,处女座和Kagra(LVK)合作宣布了90个与$ p _ {\ rm Astro}> 50 \%$ $ p _ {\ rm Astro}> 50 \%$的共融合的二进制黑洞(BBHS),但是,他们的编队频道的起源仍然是一个公开的科学问题。考虑到使用LVK默认先验推断出BBHS(BH组分质量和单个自旋)的各种特性,独立组一直在尝试解释具有不同地层通道的BBH的形成。在所有地层场景中,化学均匀的进化(CHE)通道都以明显的特征脱颖而出,即几乎相等的组分质量和优先高的单个旋转,并与轨道角动量排列。我们对在GWTC-3中正式报告的BBH事件进行贝叶斯推断,并用天体物理预测的先验代表了孤立的二进制进化的不同地层通道(CEE:COMEN-ENVELOPE EVOUTION EVOLTION CHANNEL; CHE; SMT:稳定的传质)。给定假定的模型,我们报告了GW190517 \ _055101的有力证据最有可能通过CHE频道形成。假设子样本中的BBH事件都是通过一个孤立的二进制进化通道形成的,那么我们在这些通道的局部合并速率密度下的下限为$ 11.45〜 \ \ Mathrm {gpc^{ - 3} 〜yr^yr^yr^yr^{ - 1}}} $ 0.18,$ 0.18 〜\ Mathrm {gpc^{ - 3} 〜yr^{ - 1}} $(che)和$ 0.63〜 \ Mathrm {gpc^{ - 3} 〜yr^{ - 1}}} $(SMT)$ 90 \%$ $ $ $ $ $。
The LIGO, Virgo, and KAGRA (LVK) collaboration has announced 90 coalescing binary black holes (BBHs) with $p_{\rm astro} > 50\%$ to date, however, the origin of their formation channels is still an open scientific question. Given various properties of BBHs (BH component masses and individual spins) inferred using the default priors by the LVK, independent groups have been trying to explain the formation of the BBHs with different formation channels. Of all formation scenarios, the chemically homogeneous evolution (CHE) channel has stood out with distinguishing features, namely, nearly-equal component masses and preferentially high individual spins aligned with the orbital angular momentum. We perform Bayesian inference on the BBH events officially reported in GWTC-3 with astrophysically-predicted priors representing different formation channels of the isolated binary evolution (CEE: common-envelope evolution channel; CHE; SMT: stable mass transfer). Given assumed models, we report strong evidence for GW190517\_055101 being most likely to have formed through the CHE channel. Assuming the BBH events in the subsample are all formed through one of the isolated binary evolution channels, we obtain the lower limits on the local merger rate density of these channels at $11.45 ~\mathrm{Gpc^{-3}~yr^{-1}}$ (CEE), $0.18 ~\mathrm{Gpc^{-3}~yr^{-1}}$ (CHE), and $0.63 ~\mathrm{Gpc^{-3}~yr^{-1}}$ (SMT) at $90\%$ credible level.