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Structure and dynamics of the Milky Way disk as revealed from the radial velocity distributions of APOGEE red clump stars

机译:由Apogee红丛星的径向速度分布透露的银河系磁盘的结构和动态

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We investigate the structure and dynamics of the Milky Way (MW) disk stars based on the analysis of the Apache Point Observatory Galactic Evolution Experiment (APOGEE) data, to infer the past evolution histories of the MW disk component(s) possibly affected by radial migration and/or satellite accretions. APOGEE is the first near-infrared spectroscopic survey for a large number of the MW disk stars, providing their radial velocities and chemical abundances without significant dust extinction effects. We here adopt red-clump (RC) stars (Bovy et al. 2014), for which the distances from the Sun are determined precisely, and analyze their radial velocities and chemical abundances in the MW disk regions covering from the Galactocentric distance, R, of 5 kpc to 14 kpc. We investigate their dynamical properties, such as mean rotational velocities, 〈Ⅴ_Φ〉 and velocity dispersions, as a function of R, based on the MCMC Bayesian method. We find that at all radii, the dynamics of alpha-poor stars, which are candidates of young disk stars, is much different from that of alpha-rich stars, which are candidates of old disk stars. We find that our Jeans analysis for our sample stars reveals characteristic spatial and dynamical properties of the MW disk, which are generally in agreement with the recent independent work by Bovy et al. (2015) but with a different method from ours.
机译:我们研究了银河系(MW)磁盘恒星的结构和动态,基于Apache点天文台银河进化实验(APOGEE)数据的分析,推断可能受径向影响的MW盘组件的过去演化历史迁移和/或卫星吸收。 Apogee是大量MW磁盘恒星的第一个近红外光谱调查,提供径向速度和化学丰富,而无需显着的粉尘消光效果。我们在这里采用红丛(RC)星(Bovy等,2014),其中距离太阳的距离是精确确定的,分析了覆盖着覆盖着Galactocentric距离的MW磁盘区域中的径向速度和化学丰富, 5 kpc至14 kpc。根据MCMC贝叶斯方法,我们研究了它们的动态特性,例如平均旋转速度,<ⅴ_φ>和速度分散体,作为R的函数。我们发现,在所有半径上,alpha-of alpha-pors恒星的动态与年轻磁盘明星的候选人不同,与富有的富星恒星有很大不同,这是旧圆盘星星的候选者。我们发现我们的样本恒星的牛仔裤分析显示了MW盘的特征空间和动态特性,这通常与Bovy等人的最近独立工作一致。 (2015)但是来自我们的不同方法。

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