论文标题
气体积聚调节质量金属关系的分散
Gas accretion regulates the scatter of the mass-metallicity relation
论文作者
论文摘要
在本文中,我们利用了星系演化和组装(GAEA)半分析模型来分析局部星系质量 - 气体金属关系中次级依赖关系的起源。我们的模型很好地重现了在当地宇宙中观察到的趋势,这是星系星形成速率和不同气体质量阶段的函数。我们表明,冷气含量(其最大的部分由原子气相表示)可以认为是控制预测质量金属关系散布的第三个参数,与最新的观察测量相一致。趋势可以通过气体积聚速率的波动来解释:气体供应的减少导致由于恒星形成引起的气体金属性的增加,而可用的冷气的增加导致金属性耗竭。我们证明了以前的过程负责高于质量金属关系的偏移,而后者则负责低于质量金属关系的偏差。在低和中间的质量星系中,这些负偏移主要由以前由于出色的反馈而被弹出的材料主导的晚期气化确定。
In this paper, we take advantage of the GAlaxy Evolution and Assembly (GAEA) semi-analytic model to analyse the origin of secondary dependencies in the local galaxy mass - gas metallicity relation. Our model reproduces quite well the trends observed in the local Universe as a function of galaxy star formation rate and different gas-mass phases. We show that the cold gas content (whose largest fraction is represented by the atomic gas phase) can be considered as the third parameter governing the scatter of the predicted mass-metallicity relation, in agreement with the most recent observational measurements. The trends can be explained with fluctuations of the gas accretion rates: a decrease of the gas supply leads to an increase of the gas metallicity due to star formation, while an increase of the available cold gas leads to a metallicity depletion. We demonstrate that the former process is responsible for offsets above the mass-metallicity relation, while the latter is responsible for deviations below the mass-metallicity relation. In low and intermediate mass galaxies, these negative offsets are primarily determined by late gas cooling dominated by material that has been previously ejected due to stellar feedback.