论文标题
二元种群合成
Binary Population Synthesis
论文作者
论文摘要
二进制相互作用导致形成有趣的物体,例如紧凑型二进制物,超新星,伽马射线爆发,X射线二进制文件,脉冲星,Novae,Novae,灾难性变量,热subdwarf星星,钡星和蓝色Stragglers。为了研究二元种群的演变以及这些物体的形成,多年来已经开发了许多方法,其中一种可靠的方法称为二元人口综合(BPS)值得特别关注。这种方法已经在许多天体物理学领域广泛使用,包括但不限于分析星系的出色含量,银河化学演化的研究以及有关恒星形成和宇宙重新离子化的研究。在这篇评论中,我们讨论了BP,其一般图片以及构成它的各种组成部分的作用。我们特别注意二进制中传质的稳定性标准,因为这种稳定性在很大程度上决定了二元系统的命运。我们以对该领域的未来的观点结论。
Binary interactions lead to the formation of intriguing objects, such as compact binaries, supernovae, gamma ray bursts, X-ray binaries, pulsars, novae, cataclysmic variables, hot subdwarf stars, barium stars, and blue stragglers. To study the evolution of binary populations and the consequent formation of these objects, many methods have been developed over the years, of which a robust approach named binary population synthesis (BPS) warrants special attention. This approach has seen widespread use in many areas of astrophysics, including but not limited to analyses of the stellar content of galaxies, research on galactic chemical evolution, and studies concerning star formation and cosmic re-ionization. In this review, we discuss the role of BPS, its general picture, and the various components that comprise it. We pay special attention to the stability criteria for mass transfer in binaries, as this stability largely determines the fate of binary systems. We conclude with our perspectives regarding the future of this field.