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Measuring 14 Elemental Abundances with R = 1800 LAMOST Spectra

机译:用r = 1800拉米镜谱测量14个元素丰富

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The LAMOST survey has acquired low-resolution spectra (R = 1800) for 5 million stars across the Milky Way, far more than any current stellar survey at a corresponding or higher spectral resolution. It is often assumed that only very few elemental abundances can be measured from such low-resolution spectra, limiting their utility for Galactic archaeology studies. However, Ting et al. used ab initio models to argue that low-resolution spectra should enable precision measurements of many elemental abundances, at least in theory. Here, we verify this claim in practice by measuring the relative abundances of 14 elements from LAMOST spectra with a precision of ? 0.1 dex for objects with S/N_(LAMOST) ? 30 (per pixel). We employ a spectral modeling method in which a data-driven model is combined with priors that the model gradient spectra should resemble ab initio spectral models. This approach assures that the data-driven abundance determinations draw on physically sensible features in the spectrum in their predictions and do not just exploit astrophysical correlations among abundances. Our analysis is constrained to the number of elemental abundances measured in the APOGEE survey, which is the source of the training labels. Obtaining high quality/resolution spectra for a subset of LAMOST stars to measure more elemental abundances as training labels and then applying this method to the full LAMOST catalog will provide a sample with more than 20 elemental abundances, which is an order of magnitude larger than current high-resolution surveys, substantially increasing the sample size for Galactic archaeology.
机译:Lamost调查在银河系上获得了500万颗恒星的低分辨率谱(R = 1800),远远超过了相应或更高的光谱分辨率的当前恒星测量。通常假设只有很少的元素丰富可以从这种低分辨率的光谱来测量,这限制了它们对银河考古学研究的效用。但是,Ting等人。使用AB Initio模型认为,低分辨率光谱应至少在理论上实现许多元素丰富的精度测量。在这里,我们通过用精度测量来自拉米芯电池谱的14个元素的相对丰度在实践中验证了这一要求。 0.1 Dex用于S / N_(拉米芯)的物体? 30(每像素)。我们采用一种光谱建模方法,其中数据驱动模型与模型梯度光谱应该类似于AB初始光谱模型的前导。这种方法确保数据驱动的丰度确定在其预测中的频谱中汲取物理上合理的特征,并且不仅仅是利用丰富之间的天体性相关性。我们的分析受到Apogee调查中测量的元素丰富的数量,这是培训标签的来源。获取高质量/分辨率的晶振子子集的谱,以测量更多元素丰富作为训练标签,然后将该方法应用于完整的拉莫斯特目录,将提供具有超过20个元素丰富的样本,这是大于电流的数量级高分辨率调查,大大增加了银河考古学的样本量。

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