论文标题

计算机上的宇宙电离:$ z \ sim6 $的统计,物理属性和环境

Cosmic Reionization On Computers: Statistics, Physical Properties and Environment of Lyman Limit Systems at $z\sim6$

论文作者

Fan, Jiawen, Zhu, Hanjue, Avestruz, Camille, Gnedin, Nickolay Y.

论文摘要

Lyman限制系统(LLSS)是密集的氢云,其高柱密度很高,可吸收从遥远的类星体发出的Lyman Continuum Chotos。它们的高柱密度意味着在密集的环境中起源。但是,在高红移处的LLSS的统计和分布仍然不确定。在本文中,我们使用“计算机上的宇宙电离”(CROC)项目中使用自洽的辐射转移宇宙学模拟来研究cosmic Revionization在$ z \ sim6 $的尾部末端LLSS的物理特性。我们生成3000个合成类星体视线,以在模拟中获得大量的LLS样品。此外,随着croc的高物理保真度和分辨率,我们能够量化这些LLS样品与附近星系之间的关联。我们的结果表明,与附近星系空间相关的分数LLSS随着HI柱密度的增加而增加。此外,我们发现不在任何星系附近的LLSS通常驻留在连接近代培养基(IGM)中相邻星系的丝状结构中。 LLSS与大规模结构的分布和关联的量化为我们对Reionization时期IGM-Galaxy连接的理解提供了理解,并为解释未来观察提供了理论基础。

Lyman limit systems (LLSs) are dense hydrogen clouds with high enough HI column densities to absorb Lyman continuum photons emitted from distant quasars. Their high column densities imply an origin in dense environments; however, the statistics and distribution of LLSs at high redshifts still remain uncertain. In this paper, we use self-consistent radiative transfer cosmological simulations from the "Cosmic Reionization On Computers" (CROC) project to study the physical properties of LLSs at the tail end of cosmic reionization at $z\sim6$. We generate 3000 synthetic quasar sightlines to obtain a large number of LLS samples in the simulations. In addition, with the high physical fidelity and resolution of CROC, we are able to quantify the association between these LLS samples and nearby galaxies. Our results show that the fraction LLSs spatially associated with nearby galaxies is increasing with the HI column density. Moreover, we find that LLSs that are not near any galaxy typically reside in filamentary structures connecting neighboring galaxies in the intergalactic medium (IGM). This quantification of the distribution and associations of LLSs to large scale structures informs our understanding of the IGM-galaxy connection during the Epoch of Reionization, and provides a theoretical basis for interpreting future observations.

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