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首页> 外文期刊>The Astrophysical journal >Pulsation-driven Mass Loss from Massive Stars behind Stellar Mergers in Metal-poor Dense Clusters
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Pulsation-driven Mass Loss from Massive Stars behind Stellar Mergers in Metal-poor Dense Clusters

机译:金属可怜密集簇的恒星合并背后的脉动驱动的质量损失

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The recent discovery of high-redshift?(z > 6) supermassive black holes?(SMBH) favors the formation of massive seed BHs in protogalaxies. One possible scenario is the formation of massive stars via runaway stellar collisions in a dense cluster, leaving behind massive BHs without significant mass loss. We study the pulsational instability of massive stars with the zero-age main-sequence?(ZAMS) mass and metallicity , and discuss whether or not pulsation-driven mass loss prevents massive BH formation. In the MS phase, the pulsational instability excited by the -mechanism grows in . As the stellar mass and metallicity increase, the mass-loss rate increases to . In the red supergiant?(RSG) phase, the instability is excited by the κ -mechanism operating in the hydrogen ionization zone and grows more rapidly in . The RSG mass-loss rate is almost independent of metallicity and distributes in the range of . Conducting stellar structure calculations including feedback due to pulsation-driven winds, we find that the stellar models of can leave behind remnant BHs more massive than . We conclude that massive merger products can seed monster SMBHs observed at z ?>?6.
机译:最近发现的高射频?( z> 6)超大分料的黑洞?(SMBH)有利于在Protogalaxies中形成巨大的种子BHS。一种可能的场景是通过致密簇中的失控恒星碰撞形成大量恒星,留下大规模的BHS而无需显着质量损失。我们研究了零年主序列的大规模恒星的脉动不稳定?(ZAMS)质量和金属性,并讨论脉动驱动的质量损失是否可防止大量的BH形成。在MS阶段,脉动不稳定性被 - 机制的兴奋成长。随着恒星质量和金属性的增加,质量损失率增加到。在红色超差异?(RSG)阶段,不稳定性被在氢电离区运行的κ - 机理激发,并在迅速地增长。 RSG质量损失率几乎独立于金属性并在范围内分配。进行恒星结构计算,包括由于脉动驱动的风引起的反馈,我们发现可以将残余的BHS留下的恒星模型比。我们得出结论,大规模合并产品可以在 z z?> 6观察到怪物smbhs。

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