论文标题

质量和环境在星系淬火中的作用。 ii

The Roles of Mass and Environment in the Quenching of Galaxies. II

论文作者

Contini, E., Gu, Q., Ge, X., Rhee, J., Yi, S. K., Kang, X.

论文摘要

我们利用了一个与N体模拟的合并树相结合的星系形成的分析模型,以研究环境和恒星质量在星系淬火中的作用。该模型最初是为了提供恒星质量函数的观察到的演变,以及从高红移到现在的恒星形成速率 - 恒星质量关系的合理预测。我们分析了恒星质量和环境淬火效率及其对恒星质量,光晕质量(作为环境的代理)和红移的依赖。我们的分析表明,两个淬火效率是红移,出色和光晕质量依赖性的,而光晕质量也是环境的良好代理。环境淬火会随着红移的减少而增加,低于$ \ log m_* \ sim 9.5 $,达到$ \ log m_* \ sim 10.5 $的最大值,并再次降低,在非常高的恒星质量($ \ log m_* \ gtrsim 11.5 $)下变得效率低下。中央和卫星星系的质量不同:对于前者而言,淬火效率非常弱地取决于红移,但强烈地质量质量是恒星质量。对于后者,它在$ 10 \ lyssim \ log m_* \ lyseSim 11 $中的范围内强烈取决于恒星质量和红移。根据最新的观察结果,我们发现这两个淬火效率是不可分开的:中间质量星系更快地淬火了,以及更大的光环中的中间/大型星系。在低于$ \ log m_* \ Lessim 9.5 $的恒星质量上,这两个淬火机制都效率低下,独立于红移。

We take advantage of an analytic model of galaxy formation coupled to the merger tree of an N-body simulation to study the roles of environment and stellar mass in the quenching of galaxies. The model has been originally set in order to provide the observed evolution of the stellar mass function as well as reasonable predictions of the star formation rate-stellar mass relation, from high redshift to the present time. We analyse the stellar mass and environmental quenching efficiencies and their dependence on stellar mass, halo mass (taken as a proxy for the environment) and redshift. Our analysis shows that the two quenching efficiencies are redshift, stellar and halo mass dependent, and that the halo mass is also a good proxy for the environment. The environmental quenching increases with decreasing redshift and is inefficient below $\log M_* \sim 9.5$, reaches the maximum value at $\log M_* \sim 10.5$, and decreases again, becoming poorly efficient at very high stellar mass ($\log M_* \gtrsim 11.5$). Central and satellites galaxies are mass quenched differently: for the former, the quenching efficiency depends very weakly on redshift, but strongly on stellar mass; for the latter, it strongly depends on both stellar mass and redshift in the range $10\lesssim \log M_* \lesssim 11$. According to the most recent observational results, we find that the two quenching efficiencies are not separable: intermediate mass galaxies are environmental quenched faster, as well as intermediate/massive galaxies in more massive haloes. At stellar masses lower than $\log M_* \lesssim 9.5$ both quenching mechanisms become inefficient, independently of the redshift.

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