English

A measurement of $H_0$ from DESI DR1 using energy densities

Cosmology and Nongalactic Astrophysics 2025-12-01 v1

Abstract

We present a new measurement of the Hubble constant, independent of standard rulers and robust to pre-recombination modifications such as Early Dark Energy (EDE), obtained by calibrating the total energy density of the Universe. We start using the present-day photon density as an anchor, and use the baryon-to-photon ratio from Big Bang Nucleosynthesis based measurements and the baryon-to-matter ratio from the baryons' imprint on galaxy clustering to translate to a physical matter density at present day. We then compare this to measurements of the ratio of the matter density to the critical density (Ωm\Omega_{\mathrm{m}}), calculated using the relative positions of the baryon acoustic oscillations, to measure the critical density of the universe and hence H0H_0. The important measurements of the evolution of the energy density all happen at low redshift, so we consider this a low-redshift measurement. We validate our method both on a suite of NN-body mocks and on noiseless theory vectors generated across a wide range of Hubble parameters in both Λ\LambdaCDM and EDE cosmologies. Using DESI DR1 data combined with the angular CMB acoustic scale and the latest BBN constraints, we find H0=69.0±2.5H_0 = 69.0 \pm 2.5 km s1^{-1} Mpc1^{-1}, consistent with existing early and late-time determinations of the Hubble constant. We consider the impact of non-standard dark energy evolution on our measurement. Future data, including that from further iterations of DESI and from Euclid, will add to these results providing a powerful test of the Hubble tension.

Keywords

Cite

@article{arxiv.2511.23432,
  title  = {A measurement of $H_0$ from DESI DR1 using energy densities},
  author = {Alex Krolewski and Andrea Crespi and Will J. Percival and Marco Bonici and Hanyu Zhang and J. Aguilar and S. Ahlen and D. Bianchi and D. Brooks and R. Canning and E. Chaussidon and T. Claybaugh and A. Cuceu and S. Cole and A. de la Macorra and J. Della Costa and P. Doel and J. Edelstein and S. Ferraro and A. Font-Ribera and J. Forero-Romero and E. Gaztañaga and S. Gontcho a Gontcho and G. Gutierrez and J. Guy and H. Herrera-Alcantar and K. Honscheid and D. Huterer and M. Ishak and D. Joyce and R. Kehoe and D. Kirkby and T. Kisner and A. Kremin and O. Lahav and C. Lamman and M. Landriau and L. Le Guillou and M. Levi and M. Manera and A. Meisner and R. Miquel and J. Moustakas and A. Muñoz-Gutiérrez and S. Nadathur and G. Niz and N. Palanque-Delabrouille and C. Poppett and F. Prada and I. Pérez-Ràfols and G. Rossi and L. Samushia and E. Sanchez and D. Schlegel and M. Schubnell and J. H. Silber and D. Sprayberry and G. Tarlé and B. A. Weaver and H. Zou},
  journal= {arXiv preprint arXiv:2511.23432},
  year   = {2025}
}

Comments

26 pages, 12 figures, 9 tables. Chains and data to reproduce the figures available at https://zenodo.org/records/17686137