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首页> 外文期刊>Monthly Notices of the Royal Astronomical Society >Probing Galaxy assembly bias in BOSS galaxies using void probabilities
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Probing Galaxy assembly bias in BOSS galaxies using void probabilities

机译:使用空隙概率探测BASS GALAXIES中的星系装配偏差

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摘要

We measure the void probability function ( VPF) of galaxies in the Baryon Oscillation Spectroscopic Survey ( BOSS). The VPF provides complementary information to standard two-point statistics in that it is sensitive to galaxy bias in the most extreme underdensities in the cosmic web. Thus, the VPF is ideal for testing whether halo occupation of galaxies depends on large-scale density, an effect known as galaxy assembly bias. We find that standard HOD model-one parameterized by halo mass only-fit only to the two-point function, accurately predicts the VPF. Additionally, for HOD models where density dependence is explicitly incorporated, the best-fitting models fit to the combination of the correlation function and the VPF have zero density dependence. Thus, galaxy assembly bias is not a strong source of systematic uncertainty when modelling the clustering of massive galaxies.
机译:我们测量Baryon振荡光谱测量(BOSS)中的星系的空隙概率函数(VPF)。 VPF提供了标准的两点统计数据的互补信息,因为它对宇宙网中最极端的欠额的Galaxy偏差敏感。因此,VPF是测试Halo占用的理想选择星系是否取决于大规模密度,这是称为银河组件偏置的效果。我们发现标准HOD型号 - 由Halo Mass ockized的一个仅适合两点函数,准确预测VPF。另外,对于明确纳入密度依赖性的HOD模型,最佳拟合模型适合相关函数和VPF的组合具有零密度依赖性。因此,在建模大规模星系的聚类时,银河组件偏置不是系统不确定性的强大来源。

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