论文标题

S-Plus:在不同金属度的银河球状簇中探索多个种群的宽场特性

S-PLUS: Exploring wide field properties of multiple populations in galactic globular clusters at different metallicities

论文作者

Hartmann, Eduardo A., Bonatto, Charles J., Chies-Santos, Ana L., Alonso-García, Javier, Bastian, Nate, Overzier, Roderik, Schoenell, William, Coelho, Paula R. T., Branco, Vinicius, Kanaan, Antonio, de Oliveira, Claudia Mendes, Ribeiro, Tiago

论文摘要

银河球状簇(GC)中多个恒星种群(MSP)的存在是一种鲜为人知的现象。通过探测使用多波段光度测量S-Plus影响不同吸收系的不同光谱范围,我们研究了四个GCS-NGC 104,NGC 288,NGC 288,NGC 3201和NGC 7089-金属范围范围很广。通过在3485a(u)到9114a(Z)的12个不​​同过滤器中的宽和窄带光度法结合,我们沿着颜色磁性图(CMDS)的整流红色巨型分支(CMDS)鉴定了MSP,并使用K-Means群集算法将它们分开。此外,我们利用了S-Plus检测器的巨大视野来研究样品中的径向趋势。我们报告了六种颜色组合,可用于在所有研究的簇中成功识别两个恒星种群,并表明它们可以被描述为富含Na的Na-poor。对于NGC 288和NGC 7089,它们的径向曲线均显示出2p的明显浓度。这直接支持地层理论,该理论提出了群内培养基的富集以及随后在更密集的中央区域中的恒星形成。但是,在NGC 3201的情况下,这种趋势是逆转的。与以前的文献研究直接矛盾,1p更集中。 NGC 104显示了混杂的人群。我们还构建了具有HST数据的簇簇的径向谱,最多是半光线半径,以强调GC的内部区域丢失了径向差异,并且在研究此过程时,宽场研究至关重要。

The presence of Multiple Stellar Populations (MSPs) in Galactic Globular Clusters (GCs) is a poorly understood phenomenon. By probing different spectral ranges that are affected by different absorption lines using the multi-band photometric survey S-PLUS, we study four GCs -- NGC 104, NGC 288, NGC 3201 and NGC 7089 -- that span a wide range in metallicities. With the combination of broad and narrow-band photometry in 12 different filters from 3485A (u) to 9114A (z), we identified MSPs along the rectified red-giant branch in colour-magnitude diagrams (CMDs) and separated them using a K-means clustering algorithm. Additionally, we take advantage of the large Field of View of the S-PLUS detector to investigate radial trends in our sample. We report on six colour combinations that can be used to successfully identify two stellar populations in all studied clusters and show that they can be characterized as Na-rich and Na-poor. For both NGC 288 and NGC 7089, their radial profiles show a clear concentration of 2P. This directly supports the formation theories that propose an enrichment of the intra-cluster medium and subsequent star formation in the more dense central regions. However, in the case of NGC 3201, the trend is reversed. The 1P is more centrally concentrated, in direct contradiction with previous literature studies. NGC 104 shows a well-mixed population. We also constructed radial profiles up to 1 half-light radius of the clusters with HST data to highlight that radial differences are lost in the inner regions of the GCs and that wide-field studies are essential when studying this.

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