论文标题
Vintergatan II:银河系合并所讲的历史
VINTERGATAN II: the history of the Milky Way told by its mergers
论文作者
论文摘要
使用Vintergatan宇宙学变焦模拟,我们探讨了原位和积聚材料的贡献,以及银河相互作用和合并在类似银河系的星系组装中的效果。我们发现,由重复的主要合并主导的星系演化的初始生长阶段为组装厚,运动热盘的组装提供了必要的物理条件,该磁盘由高 - [$α$/fe]恒星组成,既形成原位又形成原位和积聚的卫星星系。我们发现,进化轨道的多样性之后是模拟星系及其祖细胞,因此对于任何给定的化学成分而言,原位的重叠几乎没有重叠,并积聚了种群。在给定的年龄,[$α$/fe]的丰度比率是由于Vintergatan及其卫星的身体状况多样性而产生的,并且在Starburst发作期间形成的星星中发现了[$α$/fe]的增强。后来,停止合并活性促进了在低 - [$α$/fe]状态下恒星的原位形成,在径向扩展,薄且整体运动型较低的磁盘中,从而在对线上建立了化学上双峰薄的薄磁盘,并与观察结果结合。我们在[Fe/H] - [$α$/fe]平面中的著名特征与其物理原因之间划出了联系,并提出了一个全面的形成场景,在宇宙学的背景下自言自语,这是银河系的主要观察到的特性。
Using the VINTERGATAN cosmological zoom simulation, we explore the contributions of the in situ and accreted material, and the effect of galaxy interactions and mergers in the assembly of a Milky Way-like galaxy. We find that the initial growth phase of galaxy evolution, dominated by repeated major mergers, provides the necessary physical conditions for the assembly of a thick, kinematically hot disk populated by high-[$α$/Fe] stars, formed both in situ and in accreted satellite galaxies. We find that the diversity of evolutionary tracks followed by the simulated galaxy and its progenitors leads to very little overlap of the in situ and accreted populations for any given chemical composition. At a given age, the spread in [$α$/Fe] abundance ratio results from the diversity of physical conditions in VINTERGATAN and its satellites, with an enhancement in [$α$/Fe] found in stars formed during starburst episodes. Later, the cessation of the merger activity promotes the in situ formation of stars in the low-[$α$/Fe] regime, in a radially extended, thin and overall kinematically colder disk, thus establishing chemically bimodal thin and thick disks, in line with observations. We draw links between notable features in the [Fe/H] - [$α$/Fe] plane with their physical causes, and propose a comprehensive formation scenario explaining self-consistently, in the cosmological context, the main observed properties of the Milky Way.