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A New Approach to Convective Core Overshooting: Probabilistic Constraints from Color–Magnitude Diagrams of LMC Clusters

机译:对流核心超调的一种新方法:LMC簇的色幅图的概率约束

摘要

We present a framework to simultaneously constrain the values and uncertainties of the strength of convective core overshooting, metallicity, extinction, distance, and age in stellar populations. We then apply the framework to archival Hubble Space Telescope observations of six stellar clusters in the Large Magellanic Cloud that have reported ages between ~1-2.5 Gyr. Assuming a canonical value of the strength of core convective overshooting, we recover the well-known age-metallicity correlation, and additional correlations between metallicity and extinction and metallicity and distance. If we allow the strength of core overshooting to vary, we find that for intermediate-aged stellar clusters, the measured values of distance and extinction are negligibly effected by uncertainties of core overshooting strength. However, cluster age and metallicity may have disconcertingly large systematic shifts when core overshooting strength is allowed to vary by more than +/- 0.05 Hp. Using the six stellar clusters, we combine their posterior distribution functions to obtain the most probable core overshooting value, 0.500 +0.016 -0.134 Hp, which is in line with canonical values. ArXIV.
机译:我们提出了一个框架,可同时限制恒星群体中对流核心超调强度,金属性,消光,距离和年龄的强度值和不确定性。然后,我们将该框架应用于哈勃太空望远镜观测到的大麦哲伦星云中六个恒星簇的历史,这些星团的年龄在〜1-2.5 Gyr之间。假设核心对流超调强度的标准值,我们可以恢复众所周知的年龄-金属性相关性,以及金属性和消光性与金属性和距离之间的其他相关性。如果我们允许核心超调强度的变化,我们发现对于中年恒星群,距离和消光的测量值受到核心超调强度不确定性的影响可以忽略不计。但是,当堆芯超调强度的变化超过+/- 0.05 Hp时,团簇年龄和金属性可能会产生令人惊讶的大系统变化。使用六个恒星群集,我们结合它们的后验分布函数,以获得最可能的核心超调值0.500 +0.016 -0.134 Hp,与规范值一致。 ArXIV。

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