论文标题

黑洞X射线二进制文件的种群合成

Population Synthesis of Black Hole X-Ray Binaries

论文作者

Shao, Yong, Li, Xiang-Dong

论文摘要

我们提出了一项对包含黑洞(BH)和非脱位伴侣的X射线二进制文件(XRB)的系统研究,其中通过捕获同伴的风或Roche Lobe溢出(RLO)进行传质。如我们先前的工作所示,重点是分离的BH二进制文件的形成和演变,我们的假设模型与BH的祖细胞相关的模型预测了明显不同的二进制特性\ citep {sl19}。在本文中,我们进一步遵循出现为XRB的BH系统的进化路径。通过使用二元种群合成和详细的二元演化计算,我们可以获得BH XRB的潜在人群。已经计算出各种二进制参数的当前时期的分布。在我们所有模型的假设下,可以很好地再现了观察到的风送XRB的样品。预计风馈的XRB将是如此罕见($ \ Lessim 100 $),以至于仅检测到了几个此类系统。比较已知的RLO XRB与各种二进制参数的计算分布的比较表明,只有假设BH祖细胞质量相对较小的模型才能大致匹配观测值。因此,我们估计有数百种rlo xrbs以银河系的方式,其中大多数是低质量XRB。 RLO系统可能会变成超X射线源(ULX),如果BH增生的速度很高,我们希望大约有十几个具有BH增生器的ULX可能以银河系为$ - 像Galaxy这样的银河系。

We present a systematic study of the X-ray binaries (XRBs) containing a black hole (BH) and a non-degenerate companion, in which mass transfer takes place via either capturing the companion's wind or Roche lobe overflow (RLO). As shown in our previous work that focusing on the formation and evolution of detached BH binaries, our assumed models relevant to BH's progenitors predicted significantly different binary properties \citep{sl19}. In this paper, we further follow the evolutionary paths of the BH systems that appearing as XRBs. By use of both binary population synthesis and detailed binary evolution calculations, we can obtain the potential population of BH XRBs. Distributions at the current epoch of various binary parameters have been computed. The observed sample of wind-fed XRBs can be well reproduced under assumption of all our models. The wind-fed XRBs are expected to be so rare ($ \lesssim 100 $) that only a couple of such systems have been detected. Comparison of known RLO XRBs with the calculated distributions of various binary parameters indicates that only the models assuming relatively small masses for BH progenitors can roughly match the observations. Accordingly we estimate that there are hundreds of RLO XRBs in the Milky Way, of which the majority are low-mass XRBs. The RLO systems may become ultraluminous X-ray sources (ULXs) if the BH accretes at a very high rate, we expect that about a dozen ULXs with a BH accretor may exist in a Milky Way$-$like galaxy.

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