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The spatial evolution of stellar structures in the LMC/SMC

机译:LMC / SMC中恒星结构的空间演变

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We present an analysis of the spatial distribution of various stellar populations within the Large and Small Magellanic Clouds. We use optically selected stellar samples with mean ages between 9 and 1000 Myr, and existing stellar cluster catalogues to investigate how stellar structures form and evolve within the LMC/SMC. We use two statistical techniques to study the evolution of structure within these galaxies, the Q-parameter and the two-point correlation function (TPCF). In both galaxies we find the stars are born with a high degree of substructure (i.e. are highly fractal) and that the stellar distribution approaches that of the "background" population on timescales similar to the crossing times of the galaxy 80 Myr & ti 150 Myr for the SMC/LMC respectively). By comparing our observations to simple models of structural evolution we find that "popping star clusters" do not significantly influence structural evolution in these galaxies. Instead we argue that general galactic dynamics are the main drivers, and that substructure will be erased in approximately the crossing time, regardless of spatial scale, from small clusters to whole galaxies. This can explain why many young Galactic clusters have high degrees of substructure, while others are smooth and centrally concentrated. We conclude with a general discussion on cluster "infant mortality", in an attempt to clarify the time/spatial scales involved.
机译:我们提出各种恒星群的大,小麦哲伦云内的空间分布的分析。我们使用光学选择恒星样品平均年龄9和1000秘耳之间,以及现有的恒星簇目录调查结构如何恒星形成和LMC / SMC内发展。我们使用两种统计方法,研究结构的这些星系内的演变,Q-参数与两点相关函数(TPCF)。在这两个星系我们发现明星生来就具有高度的子结构(即高度分)和恒星的分布接近,关于类似银河系的相交时间80 MYR&TI 150秘耳时间表“背景”人口对于SMC / LMC分别地)。通过我们的观察比较,构造演化的简单模型,我们发现,“啪星团”在这些星系不显著影响结构演变。相反,我们认为,一般星系动力学的主要驱动力,而子将在约穿越时间被删除,无论空间尺度,从小型集群整个星系。这可以解释为什么许多年轻的银河星团具有高度的子结构,而有些则是光滑,中央集中。我们的结论与集群“婴儿死亡率”的一般讨论,在试图澄清所涉及的时间/空间尺度。

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