论文标题

宇宙砂:尘土飞扬的,恒星形成星系的起源

Cosmic Sands: The Origin of Dusty, Star-forming Galaxies in the Epoch of Reionization

论文作者

Lower, Sidney, Narayanan, Desika, Li, Qi, Davé, Romeel

论文摘要

我们介绍了基于Simba Galaxy形成模型的宇宙缩放模拟的宇宙砂套件,以研究早期宇宙中第一个巨大和尘土飞扬的星系的积累。在最大的光环中,我们发现紧凑的原始质量星系几乎与较小的subhalos,增强星形速率(SFR)和恒星质量的积累。星系已经通过z = 10的化学演化,其建模的尘埃质量与同一时期中观测值推断的尘埃质量相当。我们在星系上跟踪气体积聚,以了解这些早期系统如何维持极端的SFR。我们发现,光滑的气体积聚可以维持超过250 m $ $ _ {\ odot} $ / yr的SFR,但要实现SFRS,可以使星系升高远高于主序列,那么较大的扰动(如富含气体的主要合并)是触发Starburst插曲的必要条件。在用尘埃辐射转移的宇宙砂模拟后处理,我们发现,尽管最富含灰尘的星系的红外光度与局部Ulirgs相当,但它们比经典的Z = 2个亚毫米毫米的星系均匀。最后,我们讨论了在最高质量的可能原因以及我们打算在研究最早的尘土飞扬星系的化学富集的未来工作中的可能原因。

We present the Cosmic Sands suite of cosmological zoom-in simulations based on the Simba galaxy formation model in order to study the build up of the first massive and dusty galaxies in the early Universe. Residing in the most massive halos, we find that the compact proto-massive galaxies undergo nearly continuous mergers with smaller subhalos, boosting star formation rates (SFRs) and the build up of stellar mass. The galaxies are already appreciably chemically evolved by z=10, with modeled dust masses comparable to those inferred from observations in the same epoch. We track gas accretion onto the galaxies to understand how extreme SFRs can be sustained by these early systems. We find that smooth gas accretion can maintain SFRs above 250 M$_{\odot}$ / yr but to achieve SFRs that boost galaxies well above the main sequence, a larger perturbation like a gas-rich major merger is necessary to trigger a starburst episode. Post-processing the Cosmic Sands simulations with dust radiative transfer, we find that while the infrared luminosities of the most dust rich galaxies are comparable to local ULIRGs, they are substantially dimmer than classical z=2 sub-millimeter galaxies. We end with a discussion on the possible reasons for this discrepancy at the highest masses and the future work we intend to carry out to study the chemical enrichment of the earliest dusty galaxies.

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