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星系团和星系群的X射线发射。

X-ray emission from clusters and groups of galaxies.

作者信息

Mushotzky R

机构信息

Laboratory for High Energy Astrophysics, Goddard Space Flight Center, Greenbelt, MD 20771, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Jan 6;95(1):72-7. doi: 10.1073/pnas.95.1.72.

Abstract

Recent major advances in x-ray imaging and spectroscopy of clusters have allowed the determination of their mass and mass profile out to approximately 1/2 the virial radius. In rich clusters, most of the baryonic mass is in the gas phase, and the ratio of mass in gas/stars varies by a factor of 2-4. The baryonic fractions vary by a factor of approximately 3 from cluster to cluster and almost always exceed 0.09 h50-[3/2] and thus are in fundamental conflict with the assumption of Omega = 1 and the results of big bang nucleosynthesis. The derived Fe abundances are 0.2-0.45 solar, and the abundances of O and Si for low redshift systems are 0.6-1.0 solar. This distribution is consistent with an origin in pure type II supernova. The amount of light and energy produced by these supernovae is very large, indicating their importance in influencing the formation of clusters and galaxies. The lack of evolution of Fe to a redshift of z approximately 0.4 argues for very early enrichment of the cluster gas. Groups show a wide range of abundances, 0.1-0.5 solar. The results of an x-ray survey indicate that the contribution of groups to the mass density of the universe is likely to be larger than 0.1 h50-2. Many of the very poor groups have large x-ray halos and are filled with small galaxies whose velocity dispersion is a good match to the x-ray temperatures.

摘要

近期在星系团的X射线成像和光谱学方面取得的重大进展,使得能够确定其质量及质量分布,范围可达约二分之一的 virial 半径。在丰富星系团中,大部分重子质量处于气相,气体/恒星的质量比变化范围为2至4倍。重子分数在不同星系团之间变化约3倍,且几乎总是超过0.09 h50^-[3/2],因此与Ω = 1的假设以及大爆炸核合成的结果存在根本冲突。推导得出的铁丰度为0.2至0.45太阳丰度,低红移系统中氧和硅的丰度为0.6至1.0太阳丰度。这种分布与纯II型超新星的起源一致。这些超新星产生的光和能量非常大,表明它们在影响星系团和星系形成方面的重要性。铁在红移约为0.4时缺乏演化,这表明星系团气体的富集非常早。星系群显示出广泛的丰度范围,为0.1至0.5太阳丰度。一项X射线巡天的结果表明,星系群对宇宙质量密度的贡献可能大于0.1 h50^-2。许多非常贫弱的星系群有大的X射线晕,并且充满了小星系,其速度弥散与X射线温度非常匹配。

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