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A FIRST APPLICATION OF THE ALCOCK-PACZYNSKI TEST TO STACKED COSMIC VOIDS

机译:Alcock-PACZYNSKI测试在堆叠的空隙中的首次应用

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摘要

We report on the first application of the Alcock-Paczynski test to stacked voids in spectroscopic galaxy redshift surveys. We use voids from the Sutter et?al. void catalog, which was derived from the Sloan Digital Sky Survey Data Release 7 main sample and luminous red galaxy catalogs. The construction of that void catalog removes potential shape measurement bias by using a modified version of the ZOBOV algorithm and by removing voids near survey boundaries and masks. We apply the shape-fitting procedure presented in Lavaux & Wandelt to 10 void stacks out to redshift z = 0.36. Combining these measurements, we determine the mean cosmologically induced "stretch" of voids in three redshift bins, with 1σ errors of 5%-15%. The mean stretch is consistent with unity, providing no indication of a distortion induced by peculiar velocities. While the statistical errors are too large to detect the Alcock-Paczynski effect over our limited redshift range, this proof-of-concept analysis defines procedures that can be applied to larger spectroscopic galaxy surveys at higher redshifts to constrain dark energy using the expected statistical isotropy of structures that are minimally affected by uncertainties in galaxy velocity bias.
机译:我们报告了Alcock-Paczynski检验在光谱星系红移调查中对堆积的空隙的首次应用。我们使用Sutter等人提供的空白。空目录,它源自Sloan Digital Sky Survey Data Release 7主要样本和发光的红色星系目录。通过使用ZOBOV算法的修改版本并通过消除测量边界和遮罩附近的空隙,该空隙目录的构造可以消除潜在的形状测量偏差。我们将Lavaux和Wandelt中介绍的形状拟合过程应用于10个空隙堆栈,以使红移z = 0.36。结合这些测量结果,我们确定了三个红移区中的平均宇宙学诱发的“拉伸”空隙,其1σ误差为5%-15%。平均拉伸与单位一致,没有提供因特殊速度引起的变形的迹象。尽管统计误差太大,无法在我们有限的红移范围内检测到Alcock-Paczynski效应,但此概念验证分析定义了可以应用于较高光谱红移的大型光谱星系测量程序,以使用预期的统计各向同性来限制暗能量的过程。受星系速度偏差不确定性影响最小的结构。

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