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Bimodal regime in young massive clusters leading to subsequent stellar generations

机译:在年轻的大规模集群中的双峰政权导致随后的恒星世代

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Massive stars in young massive clusters insert tremendous amounts of mass and energy into their surroundings in the form of stellar winds and supernova ejecta. Mutual shock-shock collisions lead to formation of hot gas, filling the volume of the cluster. The pressure of this gas then drives a powerful cluster wind. However, it has been shown that if the cluster is massive and dense enough, it can evolve in the so-called bimodal regime, in which the hot gas inside the cluster becomes thermally unstable and forms dense clumps which are trapped inside the cluster by its gravity. We will review works on the bimodal regime and discuss the implications for the formation of subsequent stellar generations. The mass accumulates inside the cluster and as soon as a high enough column density is reached, the interior of the clumps becomes self-shielded against the ionising radiation of stars and the clumps collapse and form new stars. The second stellar generation will be enriched by products of stellar evolution from the first generation, and will be concentrated near the cluster center.
机译:年轻巨大的簇中的大型恒星以恒星风和超新星喷射物的形式将大量的质量和能量插入周围环境中。相互冲击冲突导致形成热气体,填充集群的体积。这种气体的压力然后驱动强大的簇风。然而,已经表明,如果簇足够大并且致密,则它可以在所谓的双峰状态下发展,其中簇内的热气体变得热不稳定并且形成浓密的丛,它们通过其捕获重力。我们将审查双模政权的工作,并讨论对后续恒星世代的形成的影响。质量积聚在簇内,一旦达到足够高的柱密度,丛的内部就会抵抗恒星的电离辐射和丛塌陷并形成新恒星。第二代恒星演化的产品将富集第二代,并将集中在集群中心附近。

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