Author:
Gariazzo Stefano,Martínez-Miravé Pablo,Mena Olga,Pastor Sergio,Tórtola Mariam
Abstract
Abstract
Deviations from unitarity in the three-neutrino mixing canonical picture are expected in
many physics scenarios beyond the Standard Model. The mixing of new heavy neutral leptons with the
three light neutrinos would in principle modify the strength and flavour structure of
charged-current and neutral-current interactions with matter. Non-unitarity effects would
therefore have an impact on the neutrino decoupling processes in the early Universe and on the
value of the effective number of neutrinos, N
eff. We calculate the cosmological energy
density in the form of radiation with a non-unitary neutrino mixing matrix, addressing the
possible interplay between parameters. Highly accurate measurements of N
eff from
forthcoming cosmological observations can provide independent and complementary limits on the
departures from unitarity. For completeness, we relate the scenario of small deviations from
unitarity to non-standard neutrino interactions and compare the forecasted constraints to other
existing limits in the literature.
Subject
Astronomy and Astrophysics
Cited by
5 articles.
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