Sterile neutrinos with a mass in the eV range have been invoked as a possible explanation of a variety of short baseline (SBL) neutrino oscillation anomalies. However, if one considers neutrino oscillations between active and sterile neutrinos, such neutrinos would have been fully thermalised in the early universe, and would be therefore in strong conflict with cosmological bounds. In this study we first update cosmological bounds on the mass and energy density of eV-scale sterile neutrinos. We then perform an updated study of a previously proposed model in which the sterile neutrino couples to a new light pseudoscalar degree of freedom. Consistently with previous analyses, we find that the model provides a good fit to all cosmological data and allows the high value of H0 measured in the local universe to be consistent with measurements of the cosmic microwave background. However, new high ℓ polarisation data constrain the sterile neutrino mass to be less than approximately 1 eV in this scenario. Finally, we combine the cosmological bounds on the pseudoscalar model with a Bayesian inference analysis of SBL data and conclude that only a sterile mass in narrow ranges around 1 eV remains consistent with both cosmology and SBL data.

Sterile neutrino self-interactions: H0 tension and short-baseline anomalies / M. Archidiacono, S. Gariazzo, C. Giunti, S. Hannestad, T. Tram. - In: JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS. - ISSN 1475-7516. - 2020:12(2020). [10.1088/1475-7516/2020/12/029]

Sterile neutrino self-interactions: H0 tension and short-baseline anomalies

M. Archidiacono
Primo
;
2020

Abstract

Sterile neutrinos with a mass in the eV range have been invoked as a possible explanation of a variety of short baseline (SBL) neutrino oscillation anomalies. However, if one considers neutrino oscillations between active and sterile neutrinos, such neutrinos would have been fully thermalised in the early universe, and would be therefore in strong conflict with cosmological bounds. In this study we first update cosmological bounds on the mass and energy density of eV-scale sterile neutrinos. We then perform an updated study of a previously proposed model in which the sterile neutrino couples to a new light pseudoscalar degree of freedom. Consistently with previous analyses, we find that the model provides a good fit to all cosmological data and allows the high value of H0 measured in the local universe to be consistent with measurements of the cosmic microwave background. However, new high ℓ polarisation data constrain the sterile neutrino mass to be less than approximately 1 eV in this scenario. Finally, we combine the cosmological bounds on the pseudoscalar model with a Bayesian inference analysis of SBL data and conclude that only a sterile mass in narrow ranges around 1 eV remains consistent with both cosmology and SBL data.
English
Settore FIS/05 - Astronomia e Astrofisica
Articolo
Esperti anonimi
Pubblicazione scientifica
2020
16-dic-2020
Institute of Physics Publishing (IOP)
2020
12
29
Pubblicato
Periodico con rilevanza internazionale
crossref
Aderisco
info:eu-repo/semantics/article
Sterile neutrino self-interactions: H0 tension and short-baseline anomalies / M. Archidiacono, S. Gariazzo, C. Giunti, S. Hannestad, T. Tram. - In: JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS. - ISSN 1475-7516. - 2020:12(2020). [10.1088/1475-7516/2020/12/029]
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262
Article (author)
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M. Archidiacono, S. Gariazzo, C. Giunti, S. Hannestad, T. Tram
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/801963
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