论文标题

原始的内星系调查(Pigs)II:以银河系内最贫穷的人群揭示

The Pristine Inner Galaxy Survey (PIGS) II: Uncovering the most metal-poor populations in the inner Milky Way

论文作者

Arentsen, Anke, Starkenburg, Else, Martin, Nicolas F., Aguado, David S., Zucker, Daniel B., Prieto, Carlos Allende, Hill, Vanessa, Venn, Kim. A., Carlberg, Raymond G., Hernández, Jonay I. González, Mashonkina, Lyudmila I., Navarro, Julio F., Sánchez-Janssen, Rubén, Schultheis, Mathias, Thomas, Guillaume F., Youakim, Kris, Lewis, Geraint F., Simpson, Jeffrey D., Wan, Zhen, Cohen, Roger E., Geisler, Doug, O'Connell, Julia E.

论文摘要

贫困的恒星是追踪银河系早期历史以及学习第一代恒星的重要工具。模拟表明,最古老的金属贫困恒星将在内星系中找到。然而,典型的凸出调查缺乏金属性低([Fe/h] <-1.0)恒星,因为内星系主要富含金属。原始的内星系调查(PIGS)的目的是研究该区域中的金属贫困和非常贫穷的(VMP,[Fe/H] <-2.0)恒星。在猪中,从CFHT的金属敏感性CAHK光度法中选择了用于光谱随访的金属贫困靶标。这项工作介绍了〜250度^2光度测量以及使用AATE上的Aaomega对〜8000颗恒星的中间分辨率光谱随访。使用两个独立的工具分析了光谱:具有经验光谱库的尤利斯和带有合成光谱库的Ferre。这两种方法之间的比较可以鲁棒地确定恒星参数及其不确定性。我们提出了1300颗VMP恒星的样本 - 迄今为止内部银河系中最大的VMP恒星样品。此外,我们的光谱数据集包括〜1700个水平分支星星,它们是有用的金属贫困标准蜡烛。我们此外表明,猪光度法选择具有前所未有的效率的VMP恒星:最佳候选者的86%/80%(较低/更高的灭绝)满足[Fe/H] <-2.0,较大,较少选择的样本的80%/63%也是如此。我们讨论了这个独特的数据集的未来应用,这将进一步了解我们银河系最内部地区的化学和动态演变。

Metal-poor stars are important tools for tracing the early history of the Milky Way, and for learning about the first generations of stars. Simulations suggest that the oldest metal-poor stars are to be found in the inner Galaxy. Typical bulge surveys, however, lack low metallicity ([Fe/H] < -1.0) stars because the inner Galaxy is predominantly metal-rich. The aim of the Pristine Inner Galaxy Survey (PIGS) is to study the metal-poor and very metal-poor (VMP, [Fe/H] < -2.0) stars in this region. In PIGS, metal-poor targets for spectroscopic follow-up are selected from metallicity-sensitive CaHK photometry from the CFHT. This work presents the ~250 deg^2 photometric survey as well as intermediate-resolution spectroscopic follow-up observations for ~8000 stars using AAOmega on the AAT. The spectra are analysed using two independent tools: ULySS with an empirical spectral library, and FERRE with a library of synthetic spectra. The comparison between the two methods enables a robust determination of the stellar parameters and their uncertainties. We present a sample of 1300 VMP stars -- the largest sample of VMP stars in the inner Galaxy to date. Additionally, our spectroscopic dataset includes ~1700 horizontal branch stars, which are useful metal-poor standard candles. We furthermore show that PIGS photometry selects VMP stars with unprecedented efficiency: 86%/80% (lower/higher extinction) of the best candidates satisfy [Fe/H] < -2.0, as do 80%/63% of a larger, less strictly selected sample. We discuss future applications of this unique dataset that will further our understanding of the chemical and dynamical evolution of the innermost regions of our Galaxy.

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