Gibbs point process model for young star clusters in M33

Dayi Li, P. Barmby
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引用次数: 1

Abstract

We demonstrate the power of Gibbs point process models from the spatial statistics literature when applied to studies of resolved galaxies. We conduct a rigorous analysis of the spatial distributions of objects in the star formation complexes of M33, including giant molecular clouds (GMCs) and young stellar cluster candidates (YSCCs). We choose a hierarchical model structure from GMCs to YSCCs based on the natural formation hierarchy between them. This approach circumvents the limitations of the empirical two-point correlation function analysis by naturally accounting for the inhomogeneity present in the distribution of YSCCs. We also investigate the effects of GMCs' properties on their spatial distributions. We confirm that the distribution of GMCs and YSCCs are highly correlated. We found that the spatial distributions of YSCCs reaches a peak of clustering pattern at ~250 pc scale compared to a Poisson process. This clustering mainly occurs in regions where the galactocentric distance >~4.5 kpc. Furthermore, the galactocentric distance of GMCs and their mass have strong positive effects on the correlation strength between GMCs and YSCCs. We outline some possible implications of these findings for our understanding of the cluster formation process.
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M33中年轻星团的吉布斯点过程模型
我们展示了吉布斯点过程模型在空间统计文献中应用于研究已分解星系时的力量。我们对M33恒星形成复合体中天体的空间分布进行了严格的分析,包括巨分子云(GMCs)和年轻候选星团(YSCCs)。我们根据gmc - YSCCs之间的自然地层层次选择了一种分层模型结构。这种方法通过自然地考虑到YSCCs分布中的不均匀性,规避了经验两点相关函数分析的局限性。我们还研究了gmc的性质对其空间分布的影响。我们证实了gmc和YSCCs的分布高度相关。我们发现,与泊松过程相比,YSCCs的空间分布在~250 pc尺度上达到了聚类模式的峰值。这种星团主要发生在星系中心距离>~4.5 kpc的区域。此外,gmc的星系中心距离和质量对gmc与YSCCs的相关强度有很强的正影响。我们概述了这些发现对我们理解星团形成过程的一些可能的影响。
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