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首页> 外文期刊>The Astrophysical Journal. Letters >SUPERMASSIVE BLACK HOLE FORMATION VIA GAS ACCRETION IN NUCLEAR STELLAR CLUSTERS
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SUPERMASSIVE BLACK HOLE FORMATION VIA GAS ACCRETION IN NUCLEAR STELLAR CLUSTERS

机译:通过核团簇中的积气来形成大量的黑洞

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摘要

Black holes exceeding a billion solar masses have been detected at redshifts greater than six. The rapid formation of these objects may suggest a massive early seed or a period of growth faster than Eddington. Here we suggest a new mechanism along these lines. We propose that in the process of hierarchical structure assembly, dense star clusters can be contracted on dynamical timescales due to the nearly free-fall inflow of self-gravitating gas with a mass comparable to or larger than that of the clusters. This process increases the velocity dispersion to the point where the few remaining hard binaries can no longer effectively heat the cluster, and the cluster goes into a period of homologous core collapse. The cluster core can then reach a central density high enough for fast mergers of stellar-mass black holes and hence the rapid production of a black hole seed that could be 10~5M_⊙ or larger.
机译:在超过六次的红移中已经检测到超过十亿太阳质量的黑洞。这些物体的快速形成可能意味着大量的早期种子或一段时期比爱丁顿更快。在这里,我们建议遵循这些思路的新机制。我们提出,在分层结构组装的过程中,由于质量几乎等于或大于团簇的自重气体几乎自由落体流入,致密星团可以​​在动力学时标上收缩。此过程将速度散布增加到了几个剩余的硬二进制不再能有效加热团簇的程度,并且团簇进入了同源核坍塌的时期。然后,团簇核心可以达到足够高的中心密度,以快速合并恒星质量的黑洞,因此​​可以快速生产出10〜5M_⊙或更大的黑洞种子。

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