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MATCHING THE EVOLUTION OF THE STELLAR MASS FUNCTION USING LOG-NORMAL STAR FORMATION HISTORIES

机译:利用对数-标准恒星形成历史匹配恒星质量函数的演化

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摘要

We show that a model consisting of individual, log-normal star formation histories for a volume-limited sample of z approximate to 0 galaxies reproduces the evolution of the total and quiescent stellar mass functions at z less than or similar to 2.5 and stellar massesM(*) >= 10(10) M-circle dot. This model has previously been shown to reproduce the star formation rate/stellar mass relation (SFR-M-*) over the same interval, is fully consistent with the observed evolution of the cosmic SFR density at z <= 8, and entails no explicit "quenching" prescription. We interpret these results/features in the context of other models demonstrating a similar ability to reproduce the evolution of (1) the cosmic SFR density, (2) the total/quiescent stellar mass functions, and (3) the SFR-M-* relation, proposing that the key difference between modeling approaches is the extent to which they stress/address diversity in the (star-forming) galaxy population. Finally, we suggest that observations revealing the timescale associated with dispersion in SFR(M-*) will help establish which models are the most relevant to galaxy evolution.
机译:我们显示了一个模型,该模型由体积有限的z近似于0星系的z的个体,对数正态恒星形成历史组成,可重现z小于或等于2.5和恒星质量M()的总和静态恒星质量函数的演化。 *)> = 10(10)M圆点。先前已证明,该模型可以在相同的间隔内重现恒星形成率/恒星质量关系(SFR-M- *),与在z <= 8时观测到的宇宙SFR密度的演变完全一致,并且无需明确“淬火”处方。我们在其他模型的背景下解释了这些结果/特征,这些模型展示了再现(1)宇宙SFR密度,(2)总/静止恒星质量函数和(3)SFR-M- *的演化的相似能力。关系,这表明建模方法之间的主要区别在于它们在(恒星形成的)星系种群中强调/解决多样性的程度。最后,我们建议观察揭示与SFR(M- *)中的色散相关的时间尺度的观察将有助于建立哪些模型与星系演化最相关。

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