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钱德拉X射线天文台对星系团的观测所带来的宇宙学限制

Cosmological constraints from Chandra observations of galaxy clusters.

作者信息

Allen Steven W

机构信息

Institute of Astronomy, University of Cambridge, Madingley Road, Cambridge CB3 0HA, UK.

出版信息

Philos Trans A Math Phys Eng Sci. 2002 Sep 15;360(1798):2005-17. doi: 10.1098/rsta.2002.1056.

Abstract

Chandra observations of rich, relaxed galaxy clusters allow the properties of the X-ray gas and the total gravitating mass to be determined precisely. Here, we present results for a sample of the most X-ray luminous, dynamically relaxed clusters known. We show that the Chandra data and independent gravitational lensing studies provide consistent answers on the mass distributions in the clusters. The mass profiles exhibit a form in good agreement with the predictions from numerical simulations. Combining Chandra results on the X-ray gas mass fractions in the clusters with independent measurements of the Hubble constant and the mean baryonic matter density in the Universe, we obtain a tight constraint on the mean total matter density of the Universe, Omega(m), and an interesting constraint on the cosmological constant, Omega(Lambda). We also describe the 'virial relations' linking the masses, X-ray temperatures and luminosities of galaxy clusters. These relations provide a key step in linking the observed number density and spatial distribution of clusters to the predictions from cosmological models. The Chandra data confirm the presence of a systematic offset of ca. 40% between the normalization of the observed mass-temperature relation and the predictions from standard simulations. This finding leads to a significant revision of the best-fit value of sigma(8) inferred from the observed temperature and luminosity functions of clusters.

摘要

钱德拉X射线天文台对丰富、松弛的星系团的观测使得我们能够精确测定X射线气体的性质和总引力质量。在此,我们给出了已知的X射线最亮、动力学上最松弛的星系团样本的研究结果。我们表明,钱德拉数据和独立的引力透镜研究在星系团质量分布问题上给出了一致的答案。质量分布轮廓呈现出一种与数值模拟预测高度吻合的形式。将钱德拉对星系团中X射线气体质量分数的研究结果与对哈勃常数和宇宙中平均重子物质密度的独立测量结果相结合,我们对宇宙的平均总物质密度Ω(m)得到了一个严格的限制,并对宇宙学常数Ω(Λ)得到了一个有趣的限制。我们还描述了将星系团的质量、X射线温度和光度联系起来的“维里关系”。这些关系是将观测到的星系团数密度和空间分布与宇宙学模型预测联系起来的关键一步。钱德拉数据证实,观测到的质量-温度关系的归一化与标准模拟预测之间存在约40%的系统偏差。这一发现导致了根据星系团观测到的温度和光度函数推断出的σ(8)最佳拟合值的重大修正。

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