论文标题

异常贫穷的球状簇的潮汐残余

The tidal remnant of an unusually metal-poor globular cluster

论文作者

Wan, Zhen, Lewis, Geraint F., Li, Ting S., Simpson, Jeffrey D., Martell, Sarah L., Zucker, Daniel B., Mould, Jeremy R., Erkal, Denis, Pace, Andrew B., Mackey, Dougal, Ji, Alexander P., Koposov, Sergey E., Kuehn, Kyler, Shipp, Nora, Balbinot, Eduardo, Bland-Hawthorn, Joss, Casey, Andrew R., Da Costa, Gary S., Kafle, Prajwal, Sharma, Sanjib, De Silva, Gayandhi M.

论文摘要

球形簇是宇宙中观察到的最古老的结合结构。它们在大星系中无处不在,被认为可以追踪强烈的星形形成事件和结构的分层构建。在银河系中观察到球状簇,以及各种各样的其他星系,发现了“金属层”的证据,从而发现没有化学(“金属”)丰度低于9.3至0.4%的太阳的化学(金属”)丰度。该金属层的存在可能反映出最小的质量和最大的红移,以形成幸存的球状簇,这都是了解宇宙中质量堆积的关键组成部分。在这里,我们报告了南部恒星流的测量值对银河系光环中的空间薄,动态冷的凤凰恒星流的测量。凤凰流的性质与它是球状簇的潮汐破坏残留物一致。但是,它的金属丰度([Fe/H] = -2.7)基本低于经验金属层。因此,凤凰流代表了迄今为止发现的最贫穷的球状聚类的碎片,其祖细胞与当地宇宙中当今的球状聚类种群不同。它的存在意味着金属层以下的球形簇可能存在,但在银河进化过程中被破坏。

Globular clusters are some of the oldest bound stellar structures observed in the Universe. They are ubiquitous in large galaxies and are believed to trace intense star formation events and the hierarchical build-up of structure. Observations of globular clusters in the Milky Way, and a wide variety of other galaxies, have found evidence for a `metallicity floor', whereby no globular clusters are found with chemical (`metal') abundances below approximately 0.3 to 0.4 per cent of that of the Sun. The existence of this metallicity floor may reflect a minimum mass and a maximum redshift for surviving globular clusters to form, both critical components for understanding the build-up of mass in the universe. Here we report measurements from the Southern Stellar Streams Spectroscopic Survey of the spatially thin, dynamically cold Phoenix stellar stream in the halo of the Milky Way. The properties of the Phoenix stream are consistent with it being the tidally disrupted remains of a globular cluster. However, its metal abundance ([Fe/H] = -2.7) is substantially below that of the empirical metallicity floor. The Phoenix stream thus represents the debris of the most metal-poor globular cluster discovered so far, and its progenitor is distinct from the present-day globular cluster population in the local Universe. Its existence implies that globular clusters below the metallicity floor have probably existed, but were destroyed during Galactic evolution.

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