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Integrated cosmological probes: concordance quanti?ed

机译:综合宇宙学探测:Concordance Quanti?ed

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Assessing the consistency of parameter constraints derived from different cosmo-logical probes is an important way to test the validity of the underlying cosmological model. In an earlier work [1], we computed constraints on cosmological parameters for ΛCDM from an integrated analysis of CMB temperature anisotropies and CMB lensing from Planck, galaxy clustering and weak lensing from SDSS, weak lensing from DES SV as well as Type Ia supernovae and Hubble parameter measurements. In this work, we extend this analysis and quantify the concordance between the derived constraints and those derived by the Planck Collaboration as well as WMAP9, SPT and ACT. As a measure for consistency, we use the Surprise statistic [2], which is based on the relative entropy. In the framework of a ?at ΛCDM cosmological model, we ?nd all data sets to be consistent with one another at a level of less than 1σ. We highlight that the relative entropy is sensitive to inconsistencies in the models that are used in different parts of the analysis. In particular, inconsistent assumptions for the neutrino mass break its invariance on the parameter choice. When consistent model assumptions are used, the data sets considered in this work all agree with each other and ΛCDM, without evidence for tensions.
机译:评估来自不同宇宙逻辑探针的参数约束的一致性是测试底层宇宙模型的有效性的重要途径。在早期的工作[1]中,我们从SDSS的CMB温度各向异性各向异性和CMB镜头的综合分析计算了λCDM的宇宙学参数的约束,来自SDSS的弱透镜,DES SV的弱镜片以及IA型超新星和哈勃参数测量。在这项工作中,我们扩展了此分析,并在派生约束和普朗克协作以及WMAP9,SPT和ACT中定量的那些。作为一致性的衡量标准,我们使用了基于相对熵的令人惊喜的统计[2]。在a的框架中?在λcdm宇宙学模型中,我们将所有数据集彼此一致地彼此一致,级别小于1σ。我们强调,相对熵对分析的不同部分中使用的模型中的不一致性敏感。特别地,中微子质量的不一致假设会破坏其对参数选择的不变性。当使用一致的模型假设时,在这项工作中考虑的数据集全部都同意彼此和λcdm,而没有张力的证据。

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