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Characterizing intracluster medium temperature distributions in galaxy clusters.

机译:表征星系团中集群内介质的温度分布。

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摘要

We measure for the first time the intracluster medium temperature distributions for 62 galaxy clusters in the HIFLUGCS, an X-ray flux-limited sample, with available X-ray data from XMM-Newton. We search for correlations between the width of the temperature distributions and other cluster properties, including median cluster temperature, luminosity, size, presence of a cool core, AGN activity, and dynamical state. We use a Markov Chain Monte Carlo analysis which models the ICM as a collection of X-ray emitting smoothed particles of plasma. Each smoothed particle is given its own set of parameters, including temperature, spatial position, redshift, size, and emission measure. This allows us to measure the width of the temperature distribution, median temperature, and total emission measure of each cluster.;Of all 62 clusters, none have a temperature width consistent with isothermality. Counterintuitively, we also find that the temperature distribution widths, σ kT, of disturbed clusters tend to be wider than in relaxed clusters. The presence of cluster to cluster variations in the shape of the temperature distributions and intrinsic scatter in σkT of ∼ 0.55 keV suggest the exact details of each cluster's unique thermal and dynamic history probably have a significant effect on the temperature distribution. This potentially makes σkT a very useful quantity, both for determining the dynamical state of a cluster independently of its cooling status, and for investigating the interplay between ICM cooling and mergers.
机译:我们使用来自XMM-Newton的可用X射线数据,首次测量HIFLUGCS(一个X射线通量受限的样本)中62个星系团的簇内介质温度分布。我们搜索温度分布的宽度与其他簇属性之间的相关性,包括中值簇温度,发光度,大小,冷核的存在,AGN活性和动力学状态。我们使用马尔可夫链蒙特卡罗分析,该模型将ICM建模为X射线发射的平滑等离子体粒子的集合。每个平滑的粒子都有自己的一组参数,包括温度,空间位置,红移,大小和发射度量。这使我们能够测量每个集群的温度分布宽度,中值温度和总排放量。在所有62个集群中,没有一个具有与等温一致的温度宽度。与直觉相反,我们还发现,受干扰簇的温度分布宽度σkT往往比松弛簇的宽。温度分布形状中存在簇与簇之间的变化以及σkT约为0.55 keV的固有散射,表明每个簇独特的热和动态历史的确切细节可能会对温度分布产生重大影响。这可能使σkT非常有用,既可以用于确定群集的冷却状态而不依赖其冷却状态,也可以用于研究ICM冷却和合并之间的相互作用。

著录项

  • 作者

    Frank, Kari A.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Physics Astrophysics.;Physics Astronomy and Astrophysics.;Physics General.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 146 p.
  • 总页数 146
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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