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On the Origin of the Local Group’s Peculiar Velocity

机译:当地人特有速度的起源

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We aim to settle the debate regarding the fraction of the Local Group's peculiar velocity that is induced by structures beyond the Great Attractor by calculating the dipole anisotropy of the largest, all-sky, truly X-ray-selected cluster sample compiled to date. The sample is the combination of the REFLEX catalog in the southern hemisphere, the eBCS sample in the north, and the CIZA survey in the Galactic plane. The composite REFLEX+eBCS+CIZA sample overcomes many of the problems inherent to previous galaxy and cluster catalogs that limited their effectiveness in determining the origin of the Local Group's motion. From the dipole anisotropy present in the cluster distribution, we determine that 44% of the Local Group's peculiar velocity is due to infall into the Great Attractor region, while 56% is in the form of a large-scale flow induced by more distant overdensities between 130 and 180 h-1 Mpc away. In agreement with previous analyses, we find that the Shapley supercluster is the single overdensity most responsible for the increase in the dipole amplitude beyond 130 h-1 Mpc, generating 30.4% of the large-scale contribution. We find that a significant portion of the remainder is due to numerous groupings and loose associations of clusters at roughly the same distance as the Shapley region. We also note the presence of a significant underdensity of clusters in the northern hemisphere roughly 150 h-1 Mpc away and suggest that the large-scale anisotropy observed in the cluster distribution near this distance may have as much to do with the presence of large overdensities in the south as it does with the lack of superclusters in the north.
机译:我们的目标是通过计算迄今为止编译的最大的,全天候,真正X射线选择的星团样本的偶极各向异性来解决有关大集团以外的结构所引起的局部群特有速度分数的争论。该样本是南半球的REFLEX目录,北部的eBCS样本和银河平面中的CIZA调查的组合。复合REFLEX + eBCS + CIZA样本克服了先前星系和星团目录固有的许多问题,这些问题限制了它们在确定本地群体运动起源方面的有效性。从团簇分布中存在的偶极各向异性,我们确定本地群奇特速度的44%是由于进入大吸引子区域而引起的,而56%则是由更大距离的密度引起的大流量形式。 130和180 h-1 Mpc距离。与先前的分析一致,我们发现Shapley超团簇是造成130 h-1 Mpc以上偶极子振幅增加最主要的单一超密度,占了大尺度贡献的30.4%。我们发现,其余部分的很大一部分归因于与Shapley地区大致相同距离的群集的众多分组和松散的关联。我们还注意到在北半球大约150 h-1 Mpc处存在明显的团簇密度不足,这表明在此距离附近的团簇分布中观察到的大规模各向异性可能与存在大的超密度现象有很大关系在南部,因为北部缺乏超级集群。

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