论文标题

Libfast。 I.线强度映射的半数字工具

LIMFAST. I. A Semi-Numerical Tool for Line Intensity Mapping

论文作者

Mas-Ribas, Lluís, Sun, Guochao, Chang, Tzu-Ching, Gonzalez, Michael O., Mebane, Richard H.

论文摘要

我们提出了Libfast,这是一种半数字代码,用于模拟高红移星系形成和宇宙电离,如多跟踪线强度映射(LIM)信号所揭示的那样。 Libfast建立并扩展了21cmFast代码,通过实施最新的银河形成和进化模型,广泛用于21 cm宇宙学。元血流辐射背景,包括各种恒星形成线的产生,以及追踪中性层间层间培养基(IGM)的21 cm线信号,是通过光电离模型和恒星种群合成偶联与银河形成模型的自愿描述的。我们介绍了代码的基本结构和功能,并通过在宇宙恒星形成,IgM中性分数和金属富集之间显示广泛的协议来证明其有效性和能力。我们还介绍了由Libfast模拟的21厘米,Ly $ ly $α$,H $α$,H $β$,[OII]和[OIII]线的LIM信号,并将它们与文献的结果进行了比较。我们详细介绍了建模框架的几个主要方面,包括恒星形成,化学富集和光电离的模型,可能会影响不同的LIM可观察物,因此一旦应用于观察数据,就可以测试。 Libfast旨在成为一般强度映射研究的有效且足智多谋的工具,探索了可以测量有用的宇宙学信号的广泛的星系演化和电源和频率的场景。

We present LIMFAST, a semi-numerical code for simulating high-redshift galaxy formation and cosmic reionization as revealed by multi-tracer line intensity mapping (LIM) signals. LIMFAST builds upon and extends the 21cmFAST code widely used for 21 cm cosmology by implementing state-of-the-art models of galaxy formation and evolution. The metagalactic radiation background, including the production of various star-formation lines, together with the 21 cm line signal tracing the neutral intergalactic medium (IGM), are self-consistently described by photoionization modeling and stellar population synthesis coupled to the galaxy formation model. We introduce basic structure and functionalities of the code, and demonstrate its validity and capabilities by showing broad agreements between the predicted and observed evolution of cosmic star formation, IGM neutral fraction, and metal enrichment. We also present the LIM signals of 21 cm, Ly$α$, H$α$, H$β$, [OII], and [OIII] lines simulated by LIMFAST, and compare them with results from the literature. We elaborate on how several major aspects of our modeling framework, including models of star formation, chemical enrichment, and photoionization, may impact different LIM observables and thus become testable once applied to observational data. LIMFAST aims at being an efficient and resourceful tool for intensity mapping studies in general, exploring a wide range of scenarios of galaxy evolution and reionization and frequencies over which useful cosmological signals can be measured.

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