论文标题

用于识别球状簇中多个恒星种群的合成光谱指数

Synthetic spectroscopic indices for identifying multiple stellar populations in globular clusters

论文作者

Bertone, Emanuele, Chávez, Miguel, Mendoza, J. César

论文摘要

我们提出了一项对合成光谱指数的研究,该指数可以合理地有助于确定球状簇中多个恒星种群的存在。该研究基于恒星模型大气和高分辨率(r = 500,000)合成光谱的新网格,这些光谱考虑了在银河球状球状簇中列出的化学分区。该数据库由3472个模型大气和理论光谱组成,这些光谱是由Robert L. Kurucz开发的Fortran代码DFSYNTHE,ATLAS9和SYNTHE的收集。它们覆盖了从4300至7000 K的一系列有效温度,表面重力从2.0到5.0 dex和四个不同的化学成分。根据理论光谱数据集的降级版本(r = 2500)计算了一组19个光谱指数。该集合包括以前在球状簇分析的背景下使用的五个指数和我们通过最大化区分化学成分的能力来新定义的14个指数。我们探索了大气参数对索引值的影响,并鉴定了最佳光谱诊断,这些诊断允许追踪位于主序列,红色巨型分支和水平分支的不同恒星种群的对象的签名。我们发现了一组合适的指标,这些指标主要涉及分子带(尤其是NH,也是CH和CN),对于在球形簇中识别多个恒星种群的光谱非常有前途。

We present an investigation of synthetic spectroscopic indices that can plausibly help in identifying the presence of multiple stellar populations in globular clusters. The study is based on a new grid of stellar model atmospheres and high-resolution (R=500,000) synthetic spectra, that consider chemical partitions that have been singled out in Galactic globular clusters. The database is composed of 3472 model atmospheres and theoretical spectra calculated with the collection of Fortran codes DFSYNTHE, ATLAS9 and SYNTHE, developed by Robert L. Kurucz. They cover a range of effective temperature from 4300 to 7000 K, surface gravity from 2.0 to 5.0 dex and four different chemical compositions. A set of 19 spectroscopic indices were calculated from a degraded version (R=2500) of the theoretical spectra dataset. The set includes five indices previously used in the context of globular clusters analyses and 14 indices that we have newly defined by maximizing the capability of differentiating the chemical compositions. We explored the effects of atmospheric parameters on the index values and identified the optimal spectral diagnostics that allow to trace the signatures of objects of different stellar populations, located in the main sequence, the red giant branch and the horizontal branch. We found a suitable set of indices, that mostly involve molecular bands (in particular NH, but also CH and CN), that are very promising for spectroscopically identifying multiple stellar populations in globular clusters.

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