论文标题

Lamost DR8低分辨率调查发现的Li富裕巨人

Li-rich Giants Identified from LAMOST DR8 Low-Resolution Survey

论文作者

Cai, BeiChen, Kong, XiaoMing, Shi, JianRong, Gao, Qi, Bu, Yude, Yi, Zhenping

论文摘要

一小部分巨人具有光谱锂(LI)的丰度高于标准恒星进化模型所预测的价值,LI增强的详细机制很复杂,并且缺乏明确的结论。为了更好地了解LI增强行为,需要大型且同质的Li-rich巨人样本。在这项研究中,我们设计了一种称为COORD-DENSENET的修改的卷积神经网络模型,以确定大天空区域多对象纤维光谱望远镜(Lamost)低分辨率调查(LRS)巨型光谱的A(LI)。精度在测试集上是好的:MAE = 0.15 DEX,并且σ= 0.21 dex。我们使用该模型来预测900,000多个Lamost DR8 LRS巨型光谱的丰度,并确定了7,768个Li富裕的巨人,Li丰度范围为2.0至5.4 DEX,约占所有巨人的1.02%。我们将我们的工作估计的LI丰度与高分辨率光谱衍生的li丰度进行了比较。我们发现,如果不考虑它们之间的0.27 DEX的总体偏差,那么一致性是好的。分析表明,差异主要是由于训练集中的中分辨率光谱的高a(li)。这个富裕的巨人样本大幅度扩大了李富巨人的现有样本量,并为我们提供了更多样品,以进一步研究富含李的巨人的形成和演变。

A small fraction of giants possess photospheric lithium(Li) abundance higher than the value predicted by the standard stellar evolution models, and the detailed mechanisms of Li enhancement are complicated and lack a definite conclusion. In order to better understand the Li enhancement behaviors, a large and homogeneous Li-rich giants sample is needed. In this study, we designed a modified convolutional neural network model called Coord-DenseNet to determine the A(Li) of Large Sky Area Multi-Object Fiber Spectroscopic Telescope (LAMOST) low-resolution survey (LRS) giant spectra. The precision is good on the test set: MAE=0.15 dex, and σ=0.21 dex. We used this model to predict the Li abundance of more than 900,000 LAMOST DR8 LRS giant spectra and identified 7,768 Li-rich giants with Li abundances ranging from 2.0 to 5.4 dex, accounting for about 1.02% of all giants. We compared the Li abundance estimated by our work with those derived from high-resolution spectra. We found that the consistency was good if the overall deviation of 0.27 dex between them was not considered. The analysis shows that the difference is mainly due to the high A(Li) from the medium-resolution spectra in the training set. This sample of Li-rich giants dramatically expands the existing sample size of Li-rich giants and provides us with more samples to further study the formation and evolution of Li-rich giants.

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