致密双星系统的演化

IF 26.3 2区 物理与天体物理 Q1 PHYSICS, PARTICLES & FIELDS
Konstantin A. Postnov, Lev R. Yungelson
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引用次数: 289

摘要

本文综述了由白矮星(WDs)、中子星(NSs)和黑洞(BHs)组成的致密双星的形成和演化。紧凑型双星的合并被认为是即将到来的引力波(GW)天文学最重要的来源。在第一部分中,我们讨论了具有NS和(或)BH成分的近距离双星的观测表现及其合并速率、双星系统中致密恒星形成和演化的关键点,包括大质量恒星核心坍缩过程中NSs和BHs获得的出生波的处理以及双星演化的共同包络阶段,这些与NS-NS、NS-BH和BH-BH双星的合并速率最为相关。第二部分主要介绍了双星WDs的形成和演化及其观测表现,包括它们作为具有重要宇宙学意义的热核超新星Ia的前身的作用。我们还考虑了AM CVn-stars,它们被认为是未来低频GW空间干涉仪的最佳验证二元GW源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Evolution of Compact Binary Star Systems

The Evolution of Compact Binary Star Systems

We review the formation and evolution of compact binary stars consisting of white dwarfs (WDs), neutron stars (NSs), and black holes (BHs). Mergings of compact-star binaries are expected to be the most important sources for forthcoming gravitational-wave (GW) astronomy. In the first part of the review, we discuss observational manifestations of close binaries with NS and/or BH components and their merger rate, crucial points in the formation and evolution of compact stars in binary systems, including the treatment of the natal kicks, which NSs and BHs acquire during the core collapse of massive stars and the common envelope phase of binary evolution, which are most relevant to the merging rates of NS-NS, NS-BH and BH-BH binaries. The second part of the review is devoted mainly to the formation and evolution of binary WDs and their observational manifestations, including their role as progenitors of cosmologically-important thermonuclear SN Ia. We also consider AM CVn-stars, which are thought to be the best verification binary GW sources for future low-frequency GW space interferometers.

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来源期刊
Living Reviews in Relativity
Living Reviews in Relativity 物理-物理:粒子与场物理
CiteScore
69.90
自引率
0.70%
发文量
0
审稿时长
20 weeks
期刊介绍: Living Reviews in Relativity is a peer-reviewed, platinum open-access journal that publishes reviews of research across all areas of relativity. Directed towards the scientific community at or above the graduate-student level, articles are solicited from leading authorities and provide critical assessments of current research. They offer annotated insights into key literature and describe available resources, maintaining an up-to-date suite of high-quality reviews, thus embodying the "living" aspect of the journal's title. Serving as a valuable tool for the scientific community, Living Reviews in Relativity is often the first stop for researchers seeking information on current work in relativity. Written by experts, the reviews cite, explain, and assess the most relevant resources in a given field, evaluating existing work and suggesting areas for further research. Attracting readers from the entire relativity community, the journal is useful for graduate students conducting literature surveys, researchers seeking the latest results in unfamiliar fields, and lecturers in need of information and visual materials for presentations at all levels.
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