论文标题

伴侣和染色体发射对球形簇的染色体图的形状的影响

Impact of a companion and of chromospheric emission on the shape of chromosome maps for globular clusters

论文作者

Martins, Fabrice, Morin, Julien, Charbonnel, Corinne, Lardo, Carmela, Chantereau, William

论文摘要

我们研究了二进制和色球发射对球形簇恒星HST光度法的作用。我们量化了它们对恒星在染色体图中的位置的影响,尤其是在第一批人群中。我们根据恒星进化计算产生的同句,计算了不同化学成分的恒星的大气模型和合成光谱,其恒星进化计算代表了GC中第一和第二种群的丰度变化。通过此,我们为不同化学成分的恒星混合物建造了合成染色体图。随后,我们使用合成光谱法代替了用二进制的恒星或具有色层发射的恒星。我们研究了在染色体图中如何影响恒星的位置。原则上,二进制可以解释染色体图中第一个人群的扩展。但是,我们发现鉴于GC报告的二元分数,延伸部分中恒星的密度太小。二进制解释的另一个困难是,在具有相似二元分数的簇中,染色体图中第一个群体的分布形状不同。此外,我们发现色球发射线对HST光度法的贡献太小,无法观察到对染色体图的形状产生可观察的影响。连续染色体发射具有质量上相似的二进制作用。我们得出的结论是,二进制文件确实会影响GC染色体图的形态,但它们不太可能完全解释第一批人口恒星的扩展分布的形状。 GC中恒星连续染色体发射的性质的不确定性阻止了任何定量结论。因此,延长的第一人口的起源仍无法解释。

We investigate the role of binaries and chromospheric emission on HST photometry of globular clusters' stars. We quantify their respective effects on the position of stars in the chromosome map, especially among the first population. We computed atmosphere models and synthetic spectra for stars of different chemical compositions, based on isochrones produced by stellar evolution calculations with abundance variations representative of first and second populations in GCs. From this we built synthetic chromosome maps for a mixture of stars of different chemical compositions. We subsequently replaced a fraction of stars with binaries, or stars with chromospheric emission, using synthetic spectroscopy. We studied how the position of stars is affected in the chromosome map. Binaries can, in principle, explain the extension of the first population in the chromosome map. However, we find that given the binary fraction reported for GCs, the density of stars in the extended part is too small. Another difficulty of the binary explanation is that the shape of the distribution of the first population in the chromosome map is different in clusters with similar binary fractions. Additionally, we find that the contribution of chromospheric emission lines to the HST photometry is too small to have an observable impact on the shape of the chromosome map. Continuum chromospheric emission has an effect qualitatively similar to binaries. We conclude that binaries do have an impact on the morphology of the chromosome map of GCs, but they are unlikely to explain entirely the shape of the extended distribution of the first population stars. Uncertainties in the properties of continuum chromospheric emission of stars in GCs prevent any quantitative conclusion. Therefore, the origin of the extended first population remains unexplained.

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