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Shaping Disk Galaxy Stellar Populations via Internal and External Processes

机译:通过内部和外部流程塑造盘星系恒星群体

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In recent years, effects such as the radial migration of stars in disks have been recognized as important drivers of the properties of stellar populations. Radial migration arises due to perturbative effects of disk structures such as bars and spiral arms, and can deposit stars formed in disks to regions far from their birthplaces. Migrant stars can significantly affect the demographics of their new locales, especially in low-density regions such as in the outer disks. However, in the cosmological environment, other effects such as mergers and filamentary gas accretion also influence the disk formation process. Understanding the relative importance of these processes on the detailed evolution of stellar population signatures is crucial for reconstructing the history of the Milky Way and other nearby galaxies. In the Milky Way disk in particular, the formation of the thickened component has recently attracted much attention due to its potential to serve as a diagnostic of the galaxy's early history. Some recent work suggests, however, that the vertical structure of Milky Way stellar populations is consistent with models that build up the thickened component through migration. I discuss these developments in the context of cosmological galaxy formation.
机译:近年来,诸如圆盘中圆顶迁移的效果被认为是恒星群体属性的重要驱动因素。由于诸如酒吧和螺旋臂的磁盘结构的扰动效应,并且可以在远离其出生地的区域中储存以磁盘形成的恒星,因此径向迁移产生。移民恒星可以显着影响他们新的地区的人口统计,特别是在诸如外盘中的低密度区域。然而,在宇宙环境中,其他效果如合并和丝状气体吸收也会影响盘形成过程。了解这些过程对恒星人口签名的详细演变的相对重要性对于重建银河系和其他附近星系的历史至关重要。在银河系磁盘中特别地,由于其潜力作为银河系的早期历史的诊断,因此最近的增厚组件的形成最近引起了很多关注。然而,最近的一些工作表明,银河系恒星群的垂直结构与通过迁移构建增厚成分的模型一致。我在宇宙学星形形成的背景下讨论这些发展。

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