Revisiting the equation of state of dark energy from DESI BAO with SNe Ia and CMB
Jie Zheng, Da-Chun Qiang, Zhi-Qiang You, Darshan Kumar
Abstract
The Dark Energy Spectroscopic Instrument (DESI) measurements of baryon acoustic oscillations (BAO) have recently shown a mild preference for dynamical dark energy over the standard ΛCDM model. In this paper, we analyze the w0waCDM model using DESI BAO DR2, Pantheon+ SNe Ia, and Planck 2018 CMB distance prior data. To examine how different parts of the data affect the apparent deviation from ΛCDM, we adopt two complementary redshift-cut strategies, dividing the dataset into z<z cut and z>z cut subsamples. We find that the most noticeable shifts occur when BAO and SNe Ia data in the redshift range z0.4--0.8 are included, reaching a significance of about 2σ. Within this framework, the inclusion of higher-redshift measurements progressively weakens this deviation and brings the constraints closer to the ΛCDM expectation. Moreover, the information criteria show no statistically significant preference between the w0waCDM and ΛCDM models, while the Bayesian information criterion consistently favors the ΛCDM model. In addition, a parameter-shift consistency test reveals no statistically significant tension between complementary redshift subsamples. Within the DESI BAO DR2, Pantheon+, and CMB distance prior framework adopted here, these results do not provide statistically robust evidence favoring the w0waCDM model over ΛCDM. They instead indicate that the apparent parameter shifts under different redshift cuts may be affected by statistical fluctuations and by the limited precision and number of datapoints in the current subsamples. Our analysis provides a complementary redshift-dependent diagnostic for assessing how the inferred cosmological constraints vary under different redshift selections.
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