The Hubble Tension resolved by the DESI Baryon Acoustic Oscillations Measurements

Fuente: arXiv
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Auteurs principaux: Jia, X. D., Hu, J. P., Gao, D. H., Yi, S. X., Wang, F. Y.
Format: Preprint
Publié: 2025
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author Jia, X. D.
Hu, J. P.
Gao, D. H.
Yi, S. X.
Wang, F. Y.
author_facet Jia, X. D.
Hu, J. P.
Gao, D. H.
Yi, S. X.
Wang, F. Y.
contents The $Λ$ cold dark matter ($Λ$CDM) cosmological model provides a good description of a wide range of astrophysical and cosmological observations. However, severe challenges to the phenomenological $Λ$CDM model have emerged recently, including the Hubble constant tension and the significant deviation from the $Λ$CDM model reported by the Dark Energy Spectroscopic Instrument (DESI) collaboration. Despite many explanations for the two challenges have been proposed, the origins of them are still intriguing mysteries. Here, we investigate the DESI Baryon Acoustic Oscillations (BAOs) measurements to interpret the Hubble constant tension. Employing a non-parametric method, we find that the dark energy equation of state $w(z)$ evolves with redshift from DESI BAO data and type Ia supernovae. From the Friedmann equations, the Hubble constant ($H_0$) is derived from $w(z)$ model-independently. We find that the values of $H_0$ show a descending trend as a function of redshift, and can effectively resolve the Hubble constant tension. Our study finds that the two unexpected challenges to the $Λ$CDM model can be understood in one physical framework, e.g., dynamical dark energy.
format Preprint
id arxiv_https___arxiv_org_abs_2509_17454
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Hubble Tension resolved by the DESI Baryon Acoustic Oscillations Measurements
Jia, X. D.
Hu, J. P.
Gao, D. H.
Yi, S. X.
Wang, F. Y.
Cosmology and Nongalactic Astrophysics
The $Λ$ cold dark matter ($Λ$CDM) cosmological model provides a good description of a wide range of astrophysical and cosmological observations. However, severe challenges to the phenomenological $Λ$CDM model have emerged recently, including the Hubble constant tension and the significant deviation from the $Λ$CDM model reported by the Dark Energy Spectroscopic Instrument (DESI) collaboration. Despite many explanations for the two challenges have been proposed, the origins of them are still intriguing mysteries. Here, we investigate the DESI Baryon Acoustic Oscillations (BAOs) measurements to interpret the Hubble constant tension. Employing a non-parametric method, we find that the dark energy equation of state $w(z)$ evolves with redshift from DESI BAO data and type Ia supernovae. From the Friedmann equations, the Hubble constant ($H_0$) is derived from $w(z)$ model-independently. We find that the values of $H_0$ show a descending trend as a function of redshift, and can effectively resolve the Hubble constant tension. Our study finds that the two unexpected challenges to the $Λ$CDM model can be understood in one physical framework, e.g., dynamical dark energy.
title The Hubble Tension resolved by the DESI Baryon Acoustic Oscillations Measurements
topic Cosmology and Nongalactic Astrophysics
url https://arxiv.org/abs/2509.17454