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首页> 外文期刊>The Astrophysical journal >Shellflow. I. The Convergence of the Velocity Field at 6000 Kilometers Per Second
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Shellflow. I. The Convergence of the Velocity Field at 6000 Kilometers Per Second

机译:Shellflow。 I.速度场的收敛速度为每秒6000公里

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摘要

We present the first results from the Shellflow program, an all-sky Tully-Fisher (TF) peculiar-velocity survey of 276 Sb-Sc galaxies with redshifts between 4500 and 7000 km s-1. Shellflow was designed to minimize systematic errors between observing runs and between telescopes, thereby removing the possibility of a spurious bulk flow caused by data inhomogeneity. A fit to the data yields a bulk-flow amplitude of Vbulk = 70 km s-1 (1 σ error) with respect to the cosmic microwave background, i.e., consistent with being at rest. At the 95% confidence level, the flow amplitude is 300 km s-1. Our results are insensitive to which Galactic extinction maps we use, and to the parameterization of the TF relation. The larger bulk motion found in analyses of the Mark III peculiar-velocity catalog are thus likely to be due to nonuniformities between the subsamples making up Mark III. The absence of bulk flow is consistent with the study of Giovanelli and collaborators and flow-field predictions from the observed distribution of IRAS galaxies.
机译:我们介绍了Shellflow程序的第一个结果,这是对276个Sb-Sc星系进行全天候的Tully-Fisher(TF)速度观测,其红移在4500至7000 km s-1之间。 Shellflow旨在最大程度地减少观测运行之间和望远镜之间的系统误差,从而消除了由数据不均匀性引起的假大流量的可能性。对数据的拟合相对于宇宙微波背景产生了体积流量振幅,Vbulk = 70 km s-1(1σ误差),即与静止状态一致。在置信度为95%时,流量幅度小于300 km s-1。我们的结果对于我们使用哪种银河灭绝图以及TF关系的参数化都不敏感。因此,在Mark III特有速度类别的分析中发现的较大的整体运动可能是由于组成Mark III的子样本之间的不均匀性所致。不存在大流量与Giovanelli及其合作者的研究以及根据观测到的IRAS星系分布进行的流场预测相一致。

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