Martin Nicolas F, Venn Kim A, Aguado David S, Starkenburg Else, González Hernández Jonay I, Ibata Rodrigo A, Bonifacio Piercarlo, Caffau Elisabetta, Sestito Federico, Arentsen Anke, Allende Prieto Carlos, Carlberg Raymond G, Fabbro Sébastien, Fouesneau Morgan, Hill Vanessa, Jablonka Pascale, Kordopatis Georges, Lardo Carmela, Malhan Khyati, Mashonkina Lyudmila I, McConnachie Alan W, Navarro Julio F, Sánchez-Janssen Rubén, Thomas Guillaume F, Yuan Zhen, Mucciarelli Alessio
Université de Strasbourg, CNRS, Observatoire astronomique de Strasbourg, UMR 7550, Strasbourg, France.
Max-Planck-Institut für Astronomie, Heidelberg, Germany.
Nature. 2022 Jan;601(7891):45-48. doi: 10.1038/s41586-021-04162-2. Epub 2022 Jan 5.
Stellar ejecta gradually enrich the gas out of which subsequent stars form, making the least chemically enriched stellar systems direct fossils of structures formed in the early Universe. Although a few hundred stars with metal content below 1,000th of the solar iron content are known in the Galaxy, none of them inhabit globular clusters, some of the oldest known stellar structures. These show metal content of at least approximately 0.2% of the solar metallicity [Formula: see text]. This metallicity floor appears universal, and it has been proposed that protogalaxies that merged into the galaxies we observe today were simply not massive enough to form clusters that survived to the present day. Here we report observations of a stellar stream, C-19, whose metallicity is less than 0.05% of the solar metallicity [Formula: see text]. The low metallicity dispersion and the chemical abundances of the C-19 stars show that this stream is the tidal remnant of the most metal-poor globular cluster ever discovered, and is significantly below the purported metallicity floor: clusters with significantly lower metallicities than observed today existed in the past and contributed their stars to the Milky Way halo.
恒星抛射物逐渐使后续恒星形成所源自的气体变得丰富,这使得化学丰度最低的恒星系统成为早期宇宙中形成的结构的直接化石。虽然在银河系中已知有几百颗恒星的金属含量低于太阳铁含量的千分之一,但它们都不在球状星团中,球状星团是一些已知最古老的恒星结构。这些球状星团的金属含量至少约为太阳金属丰度的0.2%[公式:见正文]。这个金属丰度下限似乎是普遍存在的,有人提出,合并形成我们今天观测到的星系的原星系质量不够大,无法形成存活至今的星团。在此,我们报告了对一个恒星流C - 19的观测结果,其金属丰度小于太阳金属丰度的0.05%[公式:见正文]。C - 19恒星的低金属丰度弥散和化学丰度表明,这个恒星流是有史以来发现的金属丰度最低的球状星团的潮汐遗迹,并且明显低于所谓的金属丰度下限:过去存在金属丰度比现今观测到的显著更低的星团,它们的恒星融入了银河系晕。