论文标题

使用中央星系在SDSS Redmapper群集中使用中央星系的性质的光晕组装偏差

Halo Assembly Bias using properties of central galaxies in SDSS redMaPPer clusters

论文作者

Sunayama, Tomomi, More, Surhud, Miyatake, Hironao

论文摘要

暗物质光环的聚类取决于固定光环质量的光环的组装历史。一种现象称为\ textit {halo assembly偏见}。在暗物质的宇宙学模拟中很容易观察到光晕组装偏见。但是,很难在观察中检测到它。与固定光环质量下光环的形成时间相关的星系或簇特性的鉴定以及选择没有投影效应的星系簇的能力是观察到光晕组装偏置的两个最重要的障碍。尤其是后者会通过在大尺度上提高镜头和聚类的幅度来引起对光环组装偏置的误导性检测。这项研究使用了从光谱法衍生的SDSS Redmapper簇的中央星系的十二个不同的特性,以将簇分为子样本。我们在固定的丰富度下测试聚类幅度对这些特性的依赖性。我们首先使用SDSS调查中的星系形状在簇周围的弱透镜信号中推断出光晕质量和偏置。我们使用群集 - 式互相关验证了两个子样本之间的偏差差。这种方法使我们能够由于光晕组装偏置信号的投影效应而使污染物解散。我们没有发现任何重要的证据表明聚类幅度与我们探索的任何特性相关的差异。我们的结果表明,中央星系性能可能与固定丰富度处的光环组装历史没有显着相关。

The clustering of dark matter halos depends on the assembly history of halos at fixed halo mass; a phenomenon referred to as \textit{halo assembly bias}. Halo assembly bias is readily observed in cosmological simulations of dark matter. However, it is difficult to detect it in observations. The identification of galaxy or cluster properties correlated with the formation time of the halo at fixed halo mass and the ability to select galaxy clusters free from projection effects are the two most significant hurdles in the observational detection of halo assembly bias. The latter, in particular, can cause a misleading detection of halo assembly bias by boosting the amplitude of lensing and clustering on large scales. This study uses twelve different properties of central galaxies of SDSS redMaPPer clusters derived from spectroscopy to divide the clusters into sub-samples. We test the dependence of the clustering amplitude on these properties at fixed richness. We first infer halo mass and bias using weak lensing signals around the clusters using shapes of galaxies from the SDSS survey. We validate the bias difference between the two subsamples using cluster-galaxy cross-correlations. This methodology allows us to decouple the contamination due to the projection effects from the halo assembly bias signals. We do not find any significant evidence of a difference in the clustering amplitudes correlated with any of our explored properties. Our results indicate that central galaxy properties may not correlate significantly with the halo assembly histories at fixed richness.

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