论文标题

对银河球状簇的恒星质量功能的新见解

New Insight into the stellar mass function of Galactic globular clusters

论文作者

Ebrahimi, H., Sollima, A., Haghi, H., Baumgardt, H., Hilker, M.

论文摘要

我们介绍了32个银河球状簇的深度光度数据分析的结果。我们分析了使用高级摄像头的宽场通道观察到的69个平行场图像,以调查哈勃太空望远镜,这补充了涵盖这些集群中心区域的球状群集国库项目中已经可用的光度法。该史无前例的数据集已用于计算这些簇中不同质量(即当今质量函数)在这些群集中的相对分数,通过比较沿群集主序列的恒星的分布以及在分析的视野中的观察片段与多种量动态模型的预测。对于31个簇的子样本,我们还可以使用可用的径向速度信息获得半质量半径,质量与光比和黑暗残余的质量分数。我们发现,大多数球状簇具有单个功率定律质量函数$ f(m)\ propto m^α$带斜率$α> -1 $在质量范围内$ 0.2 <m/\ text {m} _ {\ odot} <0.8 $。通过探索结构/动力学和轨道参数之间的相关性,我们确认了质量斜率斜率与以前的工作中已经报道的半质量弛豫时间之间的紧密反相关,以及对群集金属性的可能依赖性。这可能表明初始条件和进化影响对当今质量功能的形状的相对重要性。

We present the results of the analysis of deep photometric data of 32 Galactic globular clusters. We analysed 69 parallel field images observed with the Wide Field Channel of the Advanced Camera for Surveys of the Hubble Space Telescope which complemented the already available photometry from the globular cluster treasury project covering the central regions of these clusters. This unprecedented data set has been used to calculate the relative fraction of stars at different masses (i.e. the present-day mass function) in these clusters by comparing the observed distribution of stars along the cluster main sequence and across the analysed field of view with the prediction of multimass dynamical models. For a subsample of 31 clusters, we were able to obtain also the half-mass radii, mass-to-light ratios and the mass fraction of dark remnants using available radial velocity information. We found that the majority of globular clusters have single power law mass functions $F(m) \propto m^α$ with slopes $α>-1$ in the mass range $0.2<m/\text{M}_{\odot}<0.8$. By exploring the correlations between the structural/dynamical and orbital parameters, we confirm the tight anticorrelation between the mass function slopes and the half-mass relaxation times already reported in previous works, and possible second-order dependence on the cluster metallicity. This might indicate the relative importance of both initial conditions and evolutionary effects on the present-day shape of the mass function.

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