论文标题

关于在光度和光谱调查中镜头对星系聚类的重要性

On the importance of lensing for galaxy clustering in photometric and spectroscopic surveys

论文作者

Jelic-Cizmek, Goran, Lepori, Francesca, Bonvin, Camille, Durrer, Ruth

论文摘要

我们研究了引力镜头在星系数数量的建模中的重要性。我们确认了对光度测验的先前结果,表明在像LSST这样的调查中不能忽略镜头,因为它将推断出宇宙学参数的显着转移。对于像SKA2这样的光谱调查,我们发现相关函数的单极,四极杆和六边形的镜头忽略了镜头,也会引起参数的重要变化。对于$λ$ CDM参数,偏移为0.6 $σ$或更小的顺序。但是,对于独立于模型的分析,该分析衡量了每个红移箱中的结构增长率,忽略了镜头,在高红移时引入了高达2.3 $σ$的转移。由于生长速率直接用于测试重力理论,因此这种强烈的转移将被错误地解释为一般相对性的分解。这表明将镜头纳入未来调查的分析的重要性。另一方面,对于像Desi这样的调查,我们发现镜头并不重要,这主要是由于Desi的放大偏置参数的值,即$ s(z)$,这大大降低了高红移时的镜头贡献。我们还提出了一种改善光谱调查分析的方法,包括从光谱调查或不同光度法样本中包括不同红移箱(在光谱调查中忽略的)之间的互相关。我们表明,在SKA2分析中包括互相关并不能改善约束。另一方面,用LSST测量的互相关代替SKA2的互相关可将约束提高10%至20%。有趣的是,对于$λ$ CDM参数,我们发现LSST和SKA2是高度互补的,因为它们受到参数之间的变性的不同影响。

We study the importance of gravitational lensing in the modelling of the number counts of galaxies. We confirm previous results for photometric surveys, showing that lensing cannot be neglected in a survey like LSST since it would infer a significant shift of cosmological parameters. For a spectroscopic survey like SKA2, we find that neglecting lensing in the monopole, quadrupole and hexadecapole of the correlation function also induces an important shift of parameters. For $Λ$CDM parameters, the shift is moderate, of the order of 0.6$σ$ or less. However, for a model-independent analysis, that measures the growth rate of structure in each redshift bin, neglecting lensing introduces a shift of up to 2.3$σ$ at high redshift. Since the growth rate is directly used to test the theory of gravity, such a strong shift would wrongly be interpreted as the breakdown of General Relativity. This shows the importance of including lensing in the analysis of future surveys. On the other hand, for a survey like DESI, we find that lensing is not important, mainly due to the value of the magnification bias parameter of DESI, $s(z)$, which strongly reduces the lensing contribution at high redshift. We also propose a way of improving the analysis of spectroscopic surveys, by including the cross-correlations between different redshift bins (which is neglected in spectroscopic surveys) from the spectroscopic survey or from a different photometric sample. We show that including the cross-correlations in the SKA2 analysis does not improve the constraints. On the other hand replacing the cross-correlations from SKA2 by cross-correlations measured with LSST improves the constraints by 10 to 20 %. Interestingly, for $Λ$CDM parameters, we find that LSST and SKA2 are highly complementary, since they are affected differently by degeneracies between parameters.

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