通过贫金属恒星揭开银河系盘的起源和发展之谜

Maria Rah, Yatman Manolya, Ali Taani, A. Abushattal, K. M. Mohammad
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引用次数: 0

摘要

银河系是一个螺旋星系,由三个主要部分组成:凸起(Bulge)、盘(Disk)和光环(Halo)。其中银河系盘尤其引人关注,它拥有重子物质角动量的很大一部分,并蕴藏着至少两个主要恒星群:薄盘和厚盘。了解银河系盘的形成和演变对于理解我们银河系的起源和发展至关重要。恒星考古学提供了一种手段,通过聆听最古老、最原始的恒星,特别是贫金属恒星的宇宙学叙述,来探究星盘的演化过程。在这项研究中,我们采用了精确的测光金属度估算和盖亚早期数据第3版天体测量法,对最古老的银河系恒星进行了纯粹的样本整理。本文将对我们的主要发现进行总结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unraveling the Origins and Development of the Galactic Disk through Metal-Poor Stars
The Milky Way is a spiral galaxy comprising three main components: the Bulge, the Disk, and the Halo. Of particular interest is the Galactic disk, which holds a significant portion of the baryonic matter angular momentum and harbors at least two primary stellar populations: the thin and thick disks. Understanding the formation and evolution of the Galactic disk is crucial for comprehending the origins and development of our Galaxy. Stellar archaeology offers a means to probe the disk’s evolution by listening to the cosmological narratives of its oldest and most pristine stars, specifically the metal-poor stars. In this study, we employed accurate photometric metallicity estimates and Gaia Early Data Release 3 astrometry to curate a pure sample of the oldest Galactic stars. This proceeding presents a summary of our primary findings.
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