论文标题
R-Process Alliance:化学上标记的组II。 halo $ r $ $ - 过程增强星的扩展样品
The R-Process Alliance: Chemo-Dynamically Tagged Groups II. An Extended Sample of Halo $r$-Process-Enhanced Stars
论文作者
论文摘要
基于Gaia早期数据发行的轨道特征3个星体参数以$ {\ sim} 1700 $ $ $ $ $ $ r $ -process-eNhanced(rpe; [eu/fe; [eu/fe] $> +0.3 $> 0.3 $)金属贫困星([fe/h] $ \ leq -0.8 $)从$ r $ r $ - process Alliance,the galh and the galh and the galah and the and the galh and the galh and the and the gall and the and the and the and proce and。调查和其他文献来源。我们根据\ hdbscan〜无监督的学习算法发现了这些恒星的动力簇,并基于它们的轨道能量和圆柱形作用。我们确定$ 36 $化学上的标记组(CDTG),其中包含$ 5 $至22美元的成员; $ 17 $ CDTG至少有10美元的成员明星。以前已知的银河系(MW)子结构,例如Gaia-Sausage-Ecceladus,溅出的磁盘,金属螺旋厚的磁盘,Helmi流,LMS-1(Wukong)和Thamnos。与MW Globular簇的关联以$ 7 $ CDTG的形式确定;没有公认的MW矮星银河卫星与我们的任何CDTG相关联。先前确定的动态组也与我们的CDTG相关联,添加结构确定信息和可能的新标识。目标之间确定了碳增强的金属贫困RPE(CEMP-$ r $)星;我们将这些分配给Yoon-Beers $ A $(C)$ _ {C} $ vs. [Fe/H]图的形态组。我们的结果证实了先前的动力学分析,该分析表明,CDTG中的RPE恒星具有其出生环境影响的共同化学史。
Orbital characteristics based on Gaia Early Data Release 3 astrometric parameters are analyzed for ${\sim} 1700$ $r$-process-enhanced (RPE; [Eu/Fe] $> +0.3$) metal-poor stars ([Fe/H] $\leq -0.8$) compiled from the $R$-Process Alliance, the GALactic Archaeology with HERMES (GALAH) DR3 survey, and additional literature sources. We find dynamical clusters of these stars based on their orbital energies and cylindrical actions using the \HDBSCAN ~unsupervised learning algorithm. We identify $36$ Chemo-Dynamically Tagged Groups (CDTGs) containing between $5$ and $22$ members; $17$ CDTGs have at least $10$ member stars. Previously known Milky Way (MW) substructures such as Gaia-Sausage-Enceladus, the Splashed Disk, the Metal-Weak Thick Disk, the Helmi Stream, LMS-1 (Wukong), and Thamnos are re-identified. Associations with MW globular clusters are determined for $7$ CDTGs; no recognized MW dwarf galaxy satellites were associated with any of our CDTGs. Previously identified dynamical groups are also associated with our CDTGs, adding structural determination information and possible new identifications. Carbon-Enhanced Metal-Poor RPE (CEMP-$r$) stars are identified among the targets; we assign these to morphological groups in the Yoon-Beers $A$(C)$_{c}$ vs. [Fe/H] Diagram. Our results confirm previous dynamical analyses that showed RPE stars in CDTGs share common chemical histories, influenced by their birth environments.