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首页> 外文期刊>The Astrophysical Journal. Letters >Spatial anisotropy of galaxy kinematics in sloan digital sky survey galaxy clusters
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Spatial anisotropy of galaxy kinematics in sloan digital sky survey galaxy clusters

机译:斯隆数码天空测量银河集群中银河间运动学的空间各向异性

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摘要

Measurements of galaxy cluster kinematics are important in understanding the dynamical state and evolution of clusters of galaxies, as well as constraining cosmological models. While it is well established that clusters exhibit non-spherical geometries, evident in the distribution of galaxies on the sky, azimuthal variations of galaxy kinematics within clusters have yet to be observed. Here we measure the azimuthal dependence of the line-of-sight velocity dispersion profile in a stacked sample of 1743 galaxy clusters from the Sloan Digital Sky Survey (SDSS). The clusters are drawn from the SDSS DR8 redMaPPer catalog. We find that the line-of-sight velocity dispersion of galaxies lying along the major axis of the central galaxy is larger than those that lie along the minor axis. This is the first observational detection of anisotropic kinematics of galaxies in clusters. We show that the result is consistent with predictions from numerical simulations. Furthermore, we find that the degree of projected anisotropy is strongly dependent on the line-of-sight orientation of the galaxy cluster, opening new possibilities for assessing systematics in optical cluster finding.
机译:Galaxy Cluster Kinematics的测量对于了解Galaxies集群的动态状态和演变,以及约束宇宙学模型。虽然很好地确定了集群表现出非球形几何形状,但在天空中的星系分布中明显明显,尚未观察到簇内的星系运动学的方位角变化。在这里,我们测量来自斯隆数字天空调查(SDSS)的1743个星系集群的堆叠样本中视线速度分散曲线中的方位依赖性。群集从SDSS DR8 RedMapper目录中绘制。我们发现,沿着中央星系的主轴沿着沿着短轴躺在那里的星系的视线速度分散。这是第一次观察到簇中星系的各向异性运动学的观察检测。我们表明结果与来自数值模拟的预测一致。此外,我们发现预计各向异性的程度强烈依赖于银河系集群的视线方向,打开了在光学集群中评估系统性的新可能性。

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