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Observational Mass-to-Light Ratio of Galaxy Systems from Poor Groups to Rich Clusters

机译:从穷人组到富星团的银河系系统的观测质光比

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We study the mass-to-light ratio of galaxy systems from poor groups to rich clusters and present for the first time a large database for useful comparisons with theoretical predictions. We extend a previous work, where Bj band luminosities and optical virial masses were analyzed for a sample of 89 clusters. Here we also consider a sample of 52 more clusters, 36 poor clusters, seven rich groups, and two catalogs, of ~500 groups each, recently identified in the Nearby Optical Galaxy sample by using two different algorithms. We obtain the blue luminosity and virial mass for all systems considered. We devote a large effort to establishing the homogeneity of the resulting values, as well as to considering comparable physical regions, i.e., those included within the virial radius. By analyzing a fiducial, combined sample of 294 systems we find that the mass increases faster than the luminosity: the linear fit gives M ∝ L, with a tendency for a steeper increase in the low-mass range. In agreement with the previous work, our present results are superior owing to the much higher statistical significance and the wider dynamical range covered (~1012-1015?M☉). We present a comparison between our results and the theoretical predictions on the relation between M/LB and halo mass, obtained by combining cosmological numerical simulations and semianalytic modeling of galaxy formation.
机译:我们研究了从贫穷群体到富裕星团的星系系统的质光比,并首次提出了一个大型数据库,用于与理论预测进行有用的比较。我们扩展了以前的工作,在该工作中分析了89个簇的样本的Bj能带光度和光学病毒质量。在这里,我们还考虑了最近通过使用两种不同算法在附近的光学银河系样本中识别出的另外52个聚类样本,36个不良聚类,七个富裕群体和两个目录,每个类别约500个组。我们获得了所考虑的所有系统的蓝色发光度和病毒质量。我们致力于建立结果值的同质性,并考虑可比较的物理区域,即包括在病毒半径内的那些区域。通过分析294个系统的基准组合样本,我们发现质量的增加速度快于光度:线性拟合给出M ∝ L,并且在低质量范围内有急剧增加的趋势。与以前的工作相一致,由于具有更高的统计意义和更宽的动态范围(〜1012-1015?M☉),我们的当前结果更好。我们提出了我们的结果与M / LB与晕质量之间关系的理论预测之间的比较,该预测是通过结合宇宙学数值模拟和星系形成的半解析模型获得的。

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