论文标题

球状簇对宇宙电离的贡献

The contribution of globular clusters to cosmic reionization

论文作者

Ma, Xiangcheng, Quataert, Eliot, Wetzel, Andrew, Faucher-Giguère, Claude-André, Boylan-Kolchin, Michael

论文摘要

We study the escape fraction of ionizing photons (f_esc) in two cosmological zoom-in simulations of galaxies in the reionization era with halo mass M_halo~10^10 and 10^11 M_sun (stellar mass M*~10^7 and 10^9 M_sun) at z=5 from the Feedback in Realistic Environments project.这些模拟明确解析了原始全球簇(GCS)的形成,其中有17-39%的恒星形成在恒星爆炸过程中。使用电离辐射的后处理蒙特卡洛辐射转移计算,我们从每个星系中的恒星爆炸量超过100 MYR中从群集星和非聚类恒星中计算F_ESC。我们发现,在恒星粒子的寿命中,平均F_ESC遵循聚类恒星和非簇星的相似分布。群集在前几个MYR中往往较低,大概是因为它们在具有较高光学深度的更极端环境中优先形成。随着反馈开始破坏出生云,F_ESC稍后增加。另一方面,在群集复合物之间或超级泡沫前部的压缩壳之间形成的非群集恒星也可以具有较高的F_ESC。我们发现,平均而言,簇恒星具有可比的F_ESC与非群集恒星。在我们的模拟中,该结果在几个恒星形成模型中是强大的。我们的结果表明,从原始GC到宇宙回离的电离光子的分数与高红移星系中的簇形成效率相当,因此原始GC可能会贡献明显的光子部分,但并不是重新离子化的主要来源。

We study the escape fraction of ionizing photons (f_esc) in two cosmological zoom-in simulations of galaxies in the reionization era with halo mass M_halo~10^10 and 10^11 M_sun (stellar mass M*~10^7 and 10^9 M_sun) at z=5 from the Feedback in Realistic Environments project. These simulations explicitly resolve the formation of proto-globular clusters (GCs) self-consistently, where 17-39% of stars form in bound clusters during starbursts. Using post-processing Monte Carlo radiative transfer calculations of ionizing radiation, we compute f_esc from cluster stars and non-cluster stars formed during a starburst over ~100 Myr in each galaxy. We find that the averaged f_esc over the lifetime of a star particle follows a similar distribution for cluster stars and non-cluster stars. Clusters tend to have low f_esc in the first few Myrs, presumably because they form preferentially in more extreme environments with high optical depths; the f_esc increases later as feedback starts to disrupt the natal cloud. On the other hand, non-cluster stars formed between cluster complexes or in the compressed shell at the front of a superbubble can also have high f_esc. We find that cluster stars on average have comparable f_esc to non-cluster stars. This result is robust across several star formation models in our simulations. Our results suggest that the fraction of ionizing photons from proto-GCs to cosmic reionization is comparable to the cluster formation efficiency in high-redshift galaxies and hence proto-GCs likely contribute an appreciable fraction of photons but are not the dominant sources for reionization.

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