Variable metallicity yields as tracers of inflows

A. Camps-Fariña, P. Sánchez-Blázquez, S. Roca-Fàbrega, S. Sánchez
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Abstract

Abstract Pristine gas accretion is expected to be the main driver of sustained star formation in galaxies. We measure the required amount of accreted gas at each moment over a galaxy’s history to produce the observed metallicity at that time given its star-forming history. More massive galaxies tend to have higher accretion rates and a larger drop of the accretion rate towards the present time. Within the same mass bin galaxies that are currently star-forming or in the Green Valley have similar, sustained, accretion histories while retired galaxies had a steep decline in the past. Plotting the T80 of the individual accretion histories, a measure of how sustained they are, versus the stellar mass and current sSFR we see a distribution such that currently star-forming galaxies have sustained or recent accretion and retired galaxies have declined accretion histories.
作为流入示踪剂的可变金属丰度产率
原始气体吸积被认为是星系中持续恒星形成的主要驱动力。我们测量了星系历史上每一刻的吸积气体量,以产生当时观测到的金属丰度,并给出了它的恒星形成历史。更大质量的星系倾向于有更高的吸积速率和更大的吸积速率下降。在相同的质量仓内,目前正在形成恒星的星系或在绿谷有类似的,持续的吸积历史,而退休的星系在过去有一个急剧下降。绘制单个吸积历史的T80,衡量它们持续的程度,与恒星质量和当前的sSFR相比,我们看到了这样一个分布,即当前形成恒星的星系持续或最近的吸积,而退休的星系吸积历史下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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