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The early days of the Sculptor dwarf spheroidal galaxy

机译:雕刻家矮球状星系的早期

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We present the high-resolution spectroscopic study of five ?3.9 ≤ [Fe/H] ≤ ?2.5 stars in the Local Group dwarf spheroidal, Sculptor, thereby doubling the number of stars with comparable observations in this metallicity range. We carry out a detailed analysis of the chemical abundances of α, iron peak, and light and heavy elements, and draw comparisons with the Milky Way halo and the ultra-faint dwarf stellar populations. We show that the bulk of the Sculptor metal-poor stars follow the same trends in abundance ratios versus metallicity as the Milky Way stars. This suggests similar early conditions of star formation and a high degree of homogeneity of the interstellar medium. We find an outlier to this main regime, which seems to miss the products of the most massive of the Type II supernovae. In addition to its help in refining galaxy formation models, this star provides clues to the production of cobalt and zinc. Two of our sample stars have low odd-to-even barium isotope abundance ratios, suggestive of a fair proportion of s-process. We discuss the implication for the nucleosynthetic origin of the neutron capture elements.
机译:我们提出了在局部群矮球体Sculptor中对5个3.9≤[Fe / H]≤2.5颗恒星的高分辨率光谱研究,从而使在此金属度范围内具有可比观测值的恒星数量加倍。我们对α,铁峰以及轻重元素的化学丰度进行了详细分析,并与银河系光晕和超微弱的恒星族进行了比较。我们显示,大多数雕刻家的金属贫乏星体遵循的丰度比和金属性趋势与银河系恒星相同。这表明恒星形成的相似早期条件和星际介质的高度均匀性。我们发现这个主要机制的异常值,似乎错过了最大的II型超新星的产物。除了有助于完善银河系形成模型外,这颗恒星还为钴和锌的生产提供了线索。我们的两个采样星的钡同位素丰度比为奇偶偶数低,这表明S过程的比例相当。我们讨论中子俘获元素的核合成起源的含义。

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