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Massive Stellar Triples Leading to Sequential Binary Black Hole Mergers in the Field

机译:巨大的恒星三人导致该领域的连续二进制黑洞并购

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摘要

Stellar triples with massive stellar components are common and can lead to sequential binary black hole mergers. Here we outline the evolution toward these sequential mergers and explore these events in the context of gravitational-wave astronomy and the pair-instability mass gap. We find that binary black hole mergers in the pair-instability mass gap can be of triple origin and therefore are not exclusively formed in dense dynamical environments. We discuss the sequential merger scenario in the context of the most massive gravitational-wave sources detected to date: GW170729 and GW190521. We propose that the progenitor of GW170729 is a low-metallicity field triple. We support the premise that GW190521 could not have been formed in the field. We conclude that triple stellar evolution is fundamental to the understanding of gravitational-wave sources and likely other energetic transients as well.
机译:含有大量恒星成分的三重恒星很常见,可以导致连续的双星黑洞合并。在这里,我们概述了这些连续合并的演变,并在引力波天文学和对不稳定性质量隙的背景下探索这些事件。我们发现,双不稳定质量隙中的二元黑洞合并可以是三重起源的,因此不完全是在稠密的动力学环境中形成的。我们将在迄今为止探测到的最大质量引力波源GW170729和GW190521的背景下讨论顺序合并场景。我们认为,GW170729的祖先是一个低金属丰度场三元组。我们支持GW190521不可能在现场形成的前提。我们的结论是,三重恒星的演化对于理解引力波源和其他可能的能量瞬变也是至关重要的。

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