论文标题

高质量X射线二进制文件的X射线光度函数:使用详细的二进制进化计算研究不同物理过程的签名

X-ray luminosity function of high-mass X-ray binaries: Studying the signatures of different physical processes using detailed binary evolution calculations

论文作者

Misra, Devina, Kovlakas, Konstantinos, Fragos, Tassos, Lazzarini, Margaret, Bavera, Simone S., Lehmer, Bret D., Zezas, Andreas, Zapartas, Emmanouil, Xing, Zepei, Andrews, Jeff J., Dotter, Aaron, Rocha, Kyle A., Srivastava, Philipp M., Sun, Meng

论文摘要

X射线二进制文件(XRB)不断扩展的观察样本使它们成为限制二元进化论的出色实验室。可以通过研究各种物理假设对合成X射线光度函数(XLFS)的影响来获得此类限制,并与观察到的XLF进行比较。在这项工作中,我们专注于高质量XRB(HMXB),并研究了各种关于物理过程(例如共同 - 内玻璃阶段,核心折叠和风向填充物)的各种XLF的影响。我们使用新的二元种群综合代码Posydon,该代码采用了广泛的详细恒星结构和二进制演化模型的预报网格来模拟二进制文件的演变。我们生成96个综合XRB群体,与模型假设的不同组合相对应。生成的HMXB XLF具有丰富的特征,偏离了通常的单势定律。我们在Luminosity $ \ sim 10^{38} $ erg s $^{ - 1} $中发现了合成XLF的休息,类似于观察到的XLFS。但是,我们还发现XRB的一般过度(对于某些模型参数组合的$ \ sim $ 10 $ \ sim $ 10)主要由XRB驱动,该XRB带有黑洞吸积。关于BE-XRB,不对称超新星踢和共同启动物理的瞬时行为的假设可以显着影响我们的合成XLF的形状和归一化。我们发现,关于在Roche-Lobe Overflow发作时轨道循环的圆形假设和标准,即形成X射线发射积聚盘周围的X射线发射磁盘,这也会影响我们的合成XLF。我们的研究揭示了大规模参数研究的重要性,强调了XRB在约束二进制进化理论中的力量。

The ever-expanding observational sample of X-ray binaries (XRBs) makes them excellent laboratories for constraining binary evolution theory. Such constraints can be obtained by studying the effects of various physical assumptions on synthetic X-ray luminosity functions (XLFs) and comparing to observed XLFs. In this work, we focus on high-mass XRBs (HMXBs) and study the effects on the XLF of various, poorly-constrained assumptions regarding physical processes such as the common-envelope phase, the core-collapse, and wind-fed accretion. We use the new binary population synthesis code POSYDON, which employs extensive pre-computed grids of detailed stellar structure and binary evolution models, to simulate the evolution of binaries. We generate 96 synthetic XRB populations corresponding to different combinations of model assumptions. The generated HMXB XLFs are feature-rich, deviating from the commonly assumed single-power law. We find a break in our synthetic XLF at luminosity $\sim 10^{38}$ erg s$^{-1}$, similar to observed XLFs. However, we find also a general overabundance of XRBs (up to a factor of $\sim$10 for certain model parameter combinations) driven primarily by XRBs with black hole accretors. Assumptions about the transient behavior of Be-XRBs, asymmetric supernova kicks, and common-envelope physics can significantly affect the shape and normalization of our synthetic XLFs. We find that less well-studied assumptions regarding the circularization of the orbit at the onset of Roche-lobe overflow and criteria for the formation of an X-ray emitting accretion disk around wind-accreting black holes can also impact our synthetic XLFs. Our study reveals the importance of large-scale parameter studies, highlighting the power of XRBs in constraining binary evolution theory.

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