论文标题

恒星种群在我们银河系厚的磁盘子系统中的化学性质不一致

Inconsistency of Chemical Properties of Stellar Populations in the Thick Disk Subsystem of Our Galaxy

论文作者

Marsakov, V. A., Koval', V. V., Gozha, M. L.

论文摘要

使用有关银河系恒星物体化学元素的速度和光谱定义的现代发布的数据,我们研究了化学成分与不同种群的运动学的关系。该论文表明,星系的旧恒星种群(按运动学标准)属于厚的磁盘子系统---球形簇,类型RR Lyrae(Lyrids)的野外变量,以及近距离f- f-- G-G-G-DWARFS和现场巨头,具有不同的化学作用。尤其是,该领域的矮人和巨人平均比球形群集和莱利德斯的金属金属要高。此外,在$ \ rm {[fe/h]}> -1.0 $范围内的$α$元素的相对丰度是球形簇的最高元素,对于RR Lyrae类型的现场变量而言,最低。基于[$α$/fe]对[Fe/h]的依赖性的性质的分析,建议银河系中的厚磁盘子系统是复合的,其中至少三个组件在其中独立存在。最古老的包括金属富含金属的球状簇,该簇在IA型超新星爆发开始后不久是由单个原始式云而形成的。然后,由于落在其上方的相当大的矮人卫星银河系中,已经形成了已经形成的银河系薄磁盘的恒星的``加热''而形成了厚盘的田间恒星子系统。最后,田间星星的子系统不仅具有厚的运动学,而且甚至是一个薄的磁盘,这些磁盘落在了这个被捕获的卫星星系的星系上。

Using modern published data on velocities and spectroscopic definitions of chemical elements in stellar objects of the Galaxy, we investigated the relationship of chemical composition with the kinematics of different populations. The paper shows that the old stellar populations of the Galaxy, belonging (by the kinematic criterion) to the thick disk subsystem---globular clusters, field variables of the type RR Lyrae (lyrids), as well as close F--G dwarfs and field giants, have different chemical composition. In particular, the dwarfs and giants of the field are on average more metallic than the globular clusters and lyrids of the field. Moreover, the relative abundances of $α$-elements in the range $\rm{[Fe/H]} > -1.0$ are the highest for globular clusters, and are the lowest for for field variables of the RR Lyrae type. Based on the analysis of the nature of the dependences of [$α$/Fe] on [Fe/H] for these objects it was suggested that the thick disk subsystem in the Galaxy is composite and at least three components exist independently within it. The oldest one includes metal-rich globular clusters that formed from a single proto-galactic cloud shortly after the start of type Ia supernovae outbursts. Then the subsystem of field stars of a thick disk was formed as a result of ``heating'' of stars of already formed thin disk of the Galaxy by a rather massive dwarf satellite galaxy that fell on it. And finally, subsystems of field stars with the kinematics of not only a thick, but even a thin disk that fell on the Galaxy from this captured satellite galaxy.

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