论文标题

来自宽场地面光度法的球状簇的染色体图

Chromosome maps of Globular Clusters from wide-field ground-based photometry

论文作者

Jang, S., Milone, A. P., Legnardi, M. V., Marino, A. F., Mastrobuono-Battisti, A., Dondoglio, E., Lagioia, E. P., Casagrande, L., Carlos, M., Mohandasan, A., Cordoni, G., Bortolan, E., Lee, Y. -W.

论文摘要

哈勃太空望远镜(HST)光度法提供了对球形簇(GCS)的广泛分析。特别是,伪两色图称为“染色体图(CHM)”,可以检测并以前所未有的细节来检测和表征其多个人群。这些研究的主要局限性是HST的小视野,这使得研究多个人群的某些重要方面,例如它们的空间分布和最外层集群区域的内部运动学。为了克服这一限制,我们分析了从地面设施获得的43个GC的最先进的宽场光度法。我们得出了高分辨率的红色地图,并在需要时纠正了光度法的变红。我们在U,B和I乐队中使用光度法引入$ΔC_ {\ rm u,b,i} $ vs. $δ_{\ rm b,i} $ chm of Red-Giant Branch(RGB)和Asymptotic-Giant-Giant Branch(AGB)星星(AGB)。我们证明,该CHM是使用宽带的地面光度法构建的,是在广阔视野中识别第一代和第二代恒星(1G和2G)的有效工具。为了说明其潜力,我们得出了NGC 288中多个种群的径向分布,并推断出它们的化学成分。我们在29个GC中介绍了RGB恒星的CHM,并检测到很大程度的种类。 1G和2G恒星的分数,亚群的数量和CHM的延伸从一个群集变为另一个群集。此外,II型GC的金属贫困和金属富含恒星定义了CHM中的不同序列。我们确认存在扩展的1G序列。

Hubble Space Telescope (HST) photometry is providing an extensive analysis of globular clusters (GCs). In particular, the pseudo two-colour diagram dubbed 'chromosome map (ChM)' allowed to detect and characterize their multiple populations with unprecedented detail. The main limitation of these studies is the small field of view of HST, which makes it challenging to investigate some important aspects of the multiple populations, such as their spatial distributions and the internal kinematics in the outermost cluster regions. To overcome this limitation, we analyse state-of-art wide-field photometry of 43 GCs obtained from ground-based facilities. We derived high-resolution reddening maps and corrected the photometry for differential reddening when needed. We use photometry in the U, B, and I bands to introduce the $Δc_{\rm U,B,I}$ vs. $Δ_{\rm B,I}$ ChM of red-giant branch (RGB) and asymptotic-giant branch (AGB) stars. We demonstrate that this ChM, which is built with wide-band ground-based photometry, is an efficient tool to identify first- and second-generation stars (1G and 2G) over a wide field of view. To illustrate its potential, we derive the radial distribution of multiple populations in NGC 288 and infer their chemical composition. We present the ChMs of RGB stars in 29 GCs and detect a significant degree of variety. The fraction of 1G and 2G stars, the number of subpopulations, and the extension of the ChMs significantly change from one cluster to another. Moreover, the metal-poor and metal-rich stars of Type II GCs define distinct sequences in the ChM. We confirm the presence of extended 1G sequences.

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