论文标题

关于银河缩小尺寸与最基本的银河缩放关系之间的联系

On the connection between galactic downsizing and the most fundamental galactic scaling relations

论文作者

Spitoni, E., Calura, F., Mignoli, M., Gilli, R., Aguirre, V. Silva, Gallazzi, A.

论文摘要

在其进化中,已知星系星系遵循一些基本物理量(例如质量金属性和主要序列关系)之间的比例关系。我们旨在研究星系的演变,这些星系在给定的红移中同时依靠质量金属性和主要序列关系(MZR,MSR)。为此,我们使用Spitoni等人的分析,“泄漏”化学演化模型。 (2017年),其中星系进化是由Inflall Timecale $τ$和风效率$λ$描述的。我们提供了银河金属性,恒星质量,质量加权年龄和气体分数的时间演变的详细分析。星系在MZR和MSR上的演变在$ z \ sim0.1 $上表明,平均插入时间尺度在两个不同的恒星群众中($ m _ {\ star} <10^{10^{10} {10} {10} m _ {\ odot} $ {\ odot} $和$ m _ {减少红移。这意味着,在每个红移中,只有最年轻的星系可以在最短的时间表上组装,并且仍然属于恒星形成的MSR。在最低的质量箱中,中值$τ$的减少伴随着中值$λ$值的增加。这意味着在近期形成的系统将需要弹出更多的质量,以使其金属性保持低值。另一个重要的结果是,如年龄质量关系所追踪的银河缩小尺寸通过施加局部星系位于MZR和MSR上而自然恢复。最后,我们研究了c $ _ {\ rm iv} $选择的Agn的宿主的演变,该agn在$ z \ sim 2 $下遵循平坦的MZR,如Mignoli等人所发现的。 (2019)。如果我们强加这些系统位于MSR上,则在较低的红移下,我们会发现“倒置”的MZR,这意味着必须在其演变中发挥一些其他过程。

In their evolution, star-forming galaxies are known to follow scaling relations between some fundamental physical quantities, such as the mass-metallicity and the main sequence relations. We aim at studying the evolution of galaxies that, at a given redshift, lie simultaneously on the mass-metallicity and main sequence relations (MZR, MSR). To this aim, we use the analytical, 'leaky-box' chemical evolution model of Spitoni et al. (2017), in which galaxy evolution is described by an infall timescale $τ$ and a wind efficiency $λ$. We provide a detailed analysis of the temporal evolution of galactic metallicity, stellar mass, mass-weighted age and gas fraction. The evolution of the galaxies lying on the MZR and MSR at $z\sim0.1$ suggests that the average infall time-scale in two different bins of stellar masses ($M_{\star}<10^{10} M_{\odot}$ and $M_{\star}>10^{10} M_{\odot}$) decreases with decreasing redshift. This means that at each redshift, only the youngest galaxies can be assembled on the shortest timescales and still belong to the star-forming MSR. In the lowest mass bin, a decrease of the median $τ$ is accompanied by an increase of the median $λ$ value. This implies that systems which have formed at more recent times will need to eject a larger amount of mass to keep their metallicity at low values. Another important result is that galactic downsizing, as traced by the age-mass relation, is naturally recovered by imposing that local galaxies lie on both the MZR and MSR. Finally, we study the evolution of the hosts of C$_{\rm IV}$ -selected AGN, which at $z\sim 2$ follow a flat MZR, as found by Mignoli et al. (2019). If we impose that these systems lie on the MSR, at lower redshifts we find an 'inverted' MZR, meaning that some additional processes must be at play in their evolution.

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