论文标题

Firebox:在宇宙学量中模拟高动态范围的星系

FIREbox: Simulating galaxies at high dynamic range in a cosmological volume

论文作者

Feldmann, Robert, Quataert, Eliot, Faucher-Giguère, Claude-André, Hopkins, Philip F., Çatmabacak, Onur, Kereš, Dušan, Bassini, Luigi, Bernardini, Mauro, Bullock, James S., Cenci, Elia, Gensior, Jindra, Liang, Lichen, Moreno, Jorge, Wetzel, Andrew

论文摘要

我们引入了一套宇宙学量模拟,以研究星系的演变,这是在现实环境项目中反馈的一部分。 Firebox是本套件的主要模拟,以分辨率(〜20 pc,m_b〜6x10^4 msun)提供了一个代表性的星系样本(〜1000个带有MSTAR> 10^8 msun的星系),可与最新的Art Art Art Galaxy Zoom-inmoom-insoom-in Simulations相当。 Firebox由于其异常高的动态范围(〜10^6)以及多通道恒星反馈的包含,在完全宇宙学的环境中捕获了星际介质的多相性质。在这里,我们专注于通过比较观察数据来验证模拟预测。我们发现,MSTAR <10^{10.5-11}的模拟星系具有恒星形成速率,气体质量和金属性与观测值一致。这些星系缩放关系扩展到低质量(MSTAR〜10^7 MSUN),并遵循(破裂的)幂律关系。还重现的是宇宙HI密度的演变和Z〜0-5时的HI柱密度分布。在低Z处,Firebox预测恒星质量的 - 中质质量关系的峰值,但比观察到的巨大星系和更高的宇宙星形形成速率密度也更高,这表明单独的恒星反馈不足以在很晚才能重现大型星系的性质。鉴于其高分辨率和样本量,Firebox在$λ$ CDM宇宙中提供了银河形成理论的基线预测,同时还强调了下一代星系模拟中要解决的建模挑战。

We introduce a suite of cosmological volume simulations to study the evolution of galaxies as part of the Feedback in Realistic Environments project. FIREbox, the principal simulation of the present suite, provides a representative sample of galaxies (~1000 galaxies with Mstar > 10^8 Msun at z=0) at a resolution (~20 pc, m_b ~ 6x10^4 Msun) comparable to state-of-the-art galaxy zoom-in simulations. FIREbox captures the multiphase nature of the interstellar medium in a fully cosmological setting (L=22.1 Mpc) thanks to its exceptionally high dynamic range (~10^6) and the inclusion of multi-channel stellar feedback. Here, we focus on validating the simulation predictions by comparing to observational data. We find that simulated galaxies with Mstar < 10^{10.5-11} Msun have star formation rates, gas masses, and metallicities in broad agreement with observations. These galaxy scaling relations extend to low masses (Mstar ~ 10^7 Msun) and follow a (broken) power-law relationship. Also reproduced are the evolution of the cosmic HI density and the HI column density distribution at z~0-5. At low z, FIREbox predicts a peak in the stellar-mass--halo-mass relation, but also a higher abundance of massive galaxies and a higher cosmic star formation rate density than observed, showing that stellar feedback alone is insufficient to reproduce the properties of massive galaxies at late times. Given its high resolution and sample size, FIREbox offers a baseline prediction of galaxy formation theory in a $Λ$CDM Universe while also highlighting modeling challenges to be addressed in next-generation galaxy simulations.

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