English

Reduced Hubble Tension in Dark Radiation Models after DESI 2024

Cosmology and Nongalactic Astrophysics 2025-03-12 v3 High Energy Physics - Phenomenology

Abstract

We investigate the presence of extra relativistic degrees of freedom in the early Universe, contributing to the effective number of neutrinos NeffN_\text{eff}, as ΔNeffNeff3.0440\Delta N_\text{eff}\equiv N_\text{eff}-3.044\geq 0, in light of the recent measurements of Baryon Acoustic Oscillations (BAO) by the DESI collaboration. We analyze one-parameter extensions of the Λ\LambdaCDM model where dark radiation (DR) is free streaming or behaves as a perfect fluid, due to self-interactions. We report a significant relaxation of upper bounds on ΔNeff\Delta N_\text{eff}, with respect to previous BAO data from SDSS+6dFGS, when additionally employing Planck data (and supernovae data from Pantheon+), setting ΔNeff0.39\Delta N_\text{eff}\leq 0.39 (95%95\% C.L.) for free streaming DR, and a very mild preference for fluid DR, ΔNeff=0.2210.18+0.088\Delta N_\text{eff} = 0.221^{+0.088}_{-0.18} (0.46\leq 0.46, 95%95\% C.L.). Applying constraints from primordial element abundances leads to slightly tighter constraints on ΔNeff\Delta N_\text{eff}, but they are avoided if DR is produced after Big Bang Nucleosynthesis (BBN). For fluid DR we estimate the tension with the SH0_0ES determination of H0H_0 to be less than 3σ3\sigma and as low as 2σ2\sigma, and for free-streaming DR the tension is below 3σ3\sigma if production occurs after BBN. This lesser degree of tension motivates a combination with SH0_0ES in these cases, resulting in a 4.4σ5σ4.4\sigma-5\sigma evidence for dark radiation with ΔNeff0.6\Delta N_\text{eff}\simeq 0.6 and large improvements in χ2\chi^2 over Λ\LambdaCDM, 18Δχ225-18\lesssim \Delta \chi^2\lesssim -25. Upcoming data releases by DESI and other CMB and LSS surveys will decisively confirm or disfavour this conclusion.

Keywords

Cite

@article{arxiv.2404.15220,
  title  = {Reduced Hubble Tension in Dark Radiation Models after DESI 2024},
  author = {Itamar J. Allali and Alessio Notari and Fabrizio Rompineve},
  journal= {arXiv preprint arXiv:2404.15220},
  year   = {2025}
}

Comments

version accepted by JCAP; 8 pages, 3 figures, 3 tables, plus appendices