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The hubble tension as a hint of leptogenesis and neutrino mass generation

Authors :
Samuel J. Witte
Miguel Escudero
GRAPPA (ITFA, IoP, FNWI)
Source :
European Physical Journal C: Particles and Fields, Vol 81, Iss 6, Pp 1-25 (2021), European Physical Journal, European Physical Journal C, 81(6):515. Springer New York
Publication Year :
2021
Publisher :
Springer Science and Business Media LLC, 2021.

Abstract

The majoron, a neutrinophilic pseudo-Goldstone boson conventionally arising in the context of neutrino mass models, can damp neutrino free-streaming and inject additional energy density into neutrinos prior to recombination. The combination of these effects for an eV-scale mass majoron has been shown to ameliorate the outstanding $H_0$ tension, however only if one introduces additional dark radiation at the level of $\Delta N_{\rm eff} \sim 0.5$. We show here that models of low-scale leptogenesis can naturally source this dark radiation by generating a primordial population of majorons from the decays of GeV-scale sterile neutrinos in the early Universe. Using a posterior predictive distribution conditioned on Planck2018+BAO data, we show that the value of $H_0$ observed by the SH$_0$ES collaboration is expected to occur at the level of $\sim 10\%$ in the primordial majoron cosmology (to be compared with $\sim 0.1\%$ in the case of $\Lambda$CDM). This insight provides an intriguing connection between the neutrino mass mechanism, the baryon asymmetry of the Universe, and the discrepant measurements of $H_0$.<br />Comment: 13 pages, 7 figures, 4 appendices. v2: Matches the published version in EPJC. Minor upgrades: several references added, fixed typos, corrected a factor of 2 in Eq. 10, added a discussion about possible decoherence effects. Results and conclusions remain unchanged

Details

ISSN :
14346052 and 14346044
Volume :
81
Database :
OpenAIRE
Journal :
The European Physical Journal C
Accession number :
edsair.doi.dedup.....4995ade839bffaa36860ed49629c862e