论文标题

对大型恒星演变及其对我们对早期星系的理解的影响的新见解

New Insights into the Evolution of Massive Stars and Their Effects on Our Understanding of Early Galaxies

论文作者

Eldridge, Jan J., Stanway, Elizabeth R.

论文摘要

年轻恒星种群的可观察到的特征和随后的演变由它们的巨大恒星主导。随着我们对这些巨大恒星的理解以及影响其进化的因素的改善,我们对遥远,未解决的恒星系统的解释也可以提高。随着观察结果越来越多地探测遥远的宇宙,以及附近罕见的低金属性星爆,因此,这两个领域的机会相互补充,并导致了对恒星和星系的改善概念。在这里,我们回顾了巨大恒星统治恒星种群建模时的当前艺术状态,并讨论了他们对解释遥远宇宙的应用和含义。我们的原则发现包括: - 必须包括二元进化途径,以了解早期星系中的恒星种群。 - 限制早期星系的极端紫外线光谱的观测表明,当前模型不完整。最好的当前猜测是,需要某种形式的积聚到紧凑的残留物上。 - 非常巨大的恒星的进化和命运,100ms及以上的顺序,可能是完全了解早期星系方面的关键。

The observable characteristics and subsequent evolution of young stellar populations is dominated by their massive stars. As our understanding of those massive stars and the factors affecting their evolution improves, so our interpretation of distant, unresolved stellar systems can also advance. As observations increasingly probe the distant Universe, and the rare low metallicity starbursts nearby, so the opportunity arises for these two fields to complement one another, and lead to an improved conception of both stars and galaxies. Here we review the current state of the art in modelling of massive star dominated stellar populations, and discuss their applications and implications for interpreting the distant Universe. Our principle findings include: - Binary evolutionary pathways must be included to understand the stellar populations in early galaxies. - Observations constraining the extreme ultraviolet spectrum of early galaxies are showing that current models are incomplete. The best current guess is that some form of accretion onto compact remnants is required. - The evolution and fates of very massive stars, of the order of 100Msun and above, may be key to fully understand aspects of early galaxies.

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