首页> 外文期刊>The Astrophysical journal >FORMATION OF GLOBULAR CLUSTERS IN ATOMIC-COOLING HALOS VIA RAPID GAS CONDENSATION AND FRAGMENTATION DURING THE EPOCH OF REIONIZATION
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FORMATION OF GLOBULAR CLUSTERS IN ATOMIC-COOLING HALOS VIA RAPID GAS CONDENSATION AND FRAGMENTATION DURING THE EPOCH OF REIONIZATION

机译:在电离过程中通过快速的气体冷凝和碎片化作用在原子冷却环中形成球团

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We investigate the formation of metal-poor globular clusters (GCs) at the center of two dark matter halos with at using cosmological radiation-hydrodynamics simulations. We find that very compact (1 pc) and massive () clusters form rapidly when pristine gas collapses isothermally with the aid of efficient Lyα emission during the transition from molecular-cooling halos to atomic-cooling halos. Because the local free-fall time of dense star-forming gas is very short (), a large fraction of the collapsed gas is turned into stars before stellar feedback processes blow out the gas and shut down star formation. Although the early stage of star formation is limited to a small region of the central star-forming disk, we find that the disk quickly fragments due to metal enrichment from supernovae. Sub-clusters formed in the fragmented clouds eventually merge with the main cluster at the center. The simulated clusters closely resemble the local GCs in mass and size but show a metallicity spread that is much wider than found in the local GCs. We discuss a role of pre-enrichment by Pop III and II stars as a potential solution to the latter issue. Although not without shortcomings, it is encouraging that a naive blind (not tuned) cosmological simulation presents a possible channel for the formation of at least some massive GCs.
机译:我们使用宇宙学辐射流体动力学模拟研究了两个暗物质晕的中心的贫金属球状团簇(GCs)的形成。我们发现,当原始气体从分子冷却的光晕过渡到原子冷却的光晕时,借助于有效的Lyα排放,当原始气体等温地坍塌时,非常紧凑的(1 pc)和大量的()簇迅速形成。由于致密恒星形成气体的局部自由落体时间非常短(),因此在恒星反馈过程将气体瓦解并关闭恒星形成之前,大部分坍缩的气体都会变成恒星。尽管恒星形成的早期阶段仅限于中心恒星形成盘的一小部分,但我们发现由于超新星的金属富集,该盘迅速破碎。碎片云中形成的子集群最终与中心的主集群合并。模拟的团簇在质量和大小上与本地GC非常相似,但显示出的金属分布比本地GC中的宽得多。我们讨论了流行三号和二号星的预浓缩作为后一个问题的潜在解决方案的作用。尽管并非没有缺点,但令人鼓舞的是,幼稚的盲(未调谐)宇宙学模拟为至少某些大型GC的形成提供了可能的渠道。

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