论文标题

量化银河磁盘的化学和运动学特性

Quantifying chemical and kinematical properties of Galactic disks

论文作者

Hu, Guozhen, Shao, Zhengyi

论文摘要

我们旨在用119,558个巨星样品量化银河盘的化学和运动学特性,具有丰度和3D速度,并从Apogee DR17和Gaia EDR3目录中得出。使用化学和运动学数据,采用高斯混合模型来区分金属性沿金属性的高$α$和低$α$序列。识别和量化了四个磁盘组件,称为H $α$ MP,H $α$ MR,L $α$ MP和L $α$ MR DISK,它们对应于高$ $ $ $ a $或低$ $α$的功能,以及金属偏见或金属或金属富含金属。结合空间和恒星年龄的信息,我们确认它们在两次衰落的形成模型中得到了很好的解释。第一个湍流气体中的第一个磁心迅速形成热和厚的H $α$ MP磁盘,因此较薄的H $α$ MR和L $α$ MR DISK。然后,第二气体积聚形成较薄,最外面的L $α$ MP磁盘。我们发现,内而外和颠倒的场景不仅满足了这两个主要事件的整体银河系磁盘形成,而且还满足三个内部磁盘的形成序列。重要的是,我们揭示了L $α$ MR DISK的反相反的[m/h]趋势,这意味着其年轻的恒星更具金属贫困,这表明第二个积聚中的恢复活力逐渐占据了后来的恒星形成。同时,最近形成的恒星收敛到[m/h] $ \ sim $ -0.1 dex,表明来自两个插座的气体充分混合。

We aim to quantify the chemical and kinematical properties of the Galactic disks with a sample of 119,558 giant stars having abundances and 3D velocities taken or derived from the APOGEE DR17 and Gaia EDR3 catalogs. The Gaussian Mixture Model is employed to distinguish the high-$α$ and low-$α$ sequences along the metallicity by simutaneously using the chemical and kinematical data. Four disk components are identified and quantified that named as h$α$mp, h$α$mr, l$α$mp, and l$α$mr disks, which correspond to the features of high-$α$ or low-$α$, and metal-poor or metal-rich. Combined with the spatial and stellar age information, we confirm that they are well interpreted in the two-infall formation model. The first infall of turbulent gas quickly forms the hot and thick h$α$mp disk with consequent thinner h$α$mr and l$α$mr disks. Then the second gas accretion forms a thinner and outermost l$α$mp disk. We find that the inside-out and upside-down scenario does not only satisfy the overall Galactic disk formation of these two major episodes, but also presents in the formation sequence of three inner disks. Importantly, we reveal the inverse Age-[M/H] trend of the l$α$mr disk, which means its younger stars are more metal-poor, indicating that the rejuvenate gas from the second accretion gradually dominates the later star formation. Meanwhile, the recently formed stars convergence to [M/H]$\sim$-0.1 dex, demonstrating a sufficiently mixture of gas from two infalls.

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