论文标题
W40和Serpens South地区YSO簇的分层结构:与分形簇的群体提取和比较
Hierarchical Structure of YSO Clusters in the W40 and Serpens South Region: Group Extraction and Comparison with Fractal Clusters
论文作者
论文摘要
据信,年轻的恒星簇继承了空间分布,例如其形成过程中出生分子云的层次结构。但是,云与年轻簇之间的结构的变化在观察方面并没有得到很好的约束。我们选择W40 -Serpens South区域(〜7 $ \ times $ 9 PC $^{2} $)作为测试床,并研究了该区域中年轻恒星对象(YSOS)空间分布的层次结构属性。我们开发了一个最小跨越树(MST)的方法,将恒星切成多个级别,通过将边缘切成比算法确定的临界值更长的降低边缘。总共832 YSO分为5个级别,分别为23组。为了以受控的方式描述层次结构属性,我们在各种分形维度上构造一组合成源分布,并应用相同的方法探索其组字符。通过比较观察到的$ Q $参数和表面密度曲线和合成数据,我们发现YSO观察值与来自多性裂缝维度的空间模式相匹配。在分子云更分散的外围区域中,YSO结构接近分形尺寸为2.0,而在核心区域,分形尺寸分别接近W40和蛇蛇南区的1.6和1.4。因此,YSO可以继承分子云的致密部分的分形图案,但这种模式在几点MYR中缓慢消散。
Young stellar clusters are believed to inherit the spatial distribution like hierarchical structures of their natal molecular cloud during their formation. However, the change of the structures between the cloud and the young clusters is not well constrained observationally. We select the W40 - Serpens South region (~ 7 $\times$ 9 pc$^{2}$) of the Aquila Rift as a testbed and investigate hierarchical properties of spatial distribution of young stellar objects (YSOs) in this region. We develop a minimum spanning tree (MST)-based method to group stars into several levels by successively cutting down edges longer than an algorithmically determined critical value. A total of 832 YSOs are divided into 5 levels with 23 groups. For describing the hierarchical properties in a controlled way, we construct a set of synthetic source distributions at various fractal dimensions, and apply the same method to explore their group characters. By comparing the $Q$ parameter and the surface density profiles of the observed and the synthetic data, we find that the YSO observation matches spatial patterns from multi-fractal dimensions. In the periphery region where the molecular clouds are more diffuse, the YSO structure is close to a fractal dimension of 2.0, while in the core regions the fractal dimensions are close to 1.6 and 1.4 for the W40 and the Serpens South regions, respectively. Therefore, the YSOs may inherit the fractal pattern of the dense part of the molecular clouds, but such pattern dissipates slowly in several Myr.