New Insights into Dark Energy from DESI DR2 with CMB and SNIa

18 Oct 2025, 16:10
20m
Lecture Hall, 3rd Floor, Building 7, "Eoc·Economy" Senior Talent Hub(两山高层次人才集聚区-7号楼3层报告中心)

Lecture Hall, 3rd Floor, Building 7, "Eoc·Economy" Senior Talent Hub(两山高层次人才集聚区-7号楼3层报告中心)

Speaker

Da-Chun Qiang (Henan Academy of Sciences)

Description

Analyses by the Dark Energy Spectroscopic Instrument (DESI) collaboration suggest a significant deviation from the ΛCDM model when their baryon acoustic oscillation (BAO) measurements are combined with Planck cosmic microwave background (CMB) data and various Type Ia supernova (SNIa) samples. In this work, we systematically investigate the origin of the deviations from the ΛCDM reported in recent cosmological analyses by combining different CMB datasets, BAO measurements, and DESY5 SNIa samples within the w0waCDM framework. We find that the DESY5 SNIa sample, particularly its low-redshift component (DES-lowz), the Planck CMB data, the lensing measurements of Planck and ACT-DR6, and the DESI-DR2 BAO measurements contribute most significantly to the observed tensions. In contrast, combinations involving DES-SN, WMAP, SPT, and ACT-DR6 remain consistent with ΛCDM within ∼ 1σ. Our results highlight the critical impact of SNIa systematics, CMB data, and the choice of BAO dataset on constraints of dynamical dark energy models. These findings underscore the importance of improved calibration, homogeneity, and cross-validation of observational datasets to robustly assess potential deviations from the standard cosmological model.

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