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Astrophysical Consequences of a Neutrinophilic Two-Higgs-Doublet Model

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abstract

In a recently proposed neutrinophilic two-Higgs doublet model, the low-energy (sub-MeV) effective theory consists of a real scalar with a vev of O(0.1) eV and three Dirac neutrinos. Other models could lead to the same low energy theory. In this Brief Report, we study constraints on the parameter space of the model, including vacuum stability, unitarity, perturbativity and the effects on the invisible Z width. Interestingly, we find that all neutrinos become massless at temperatures above approximately 1000 K, but can find no phenomenological effects of this finding. The most direct test of the model is that it predicts that in a galactic supernova, the energy distributions of the electron, muon and tau neutrinos will be Fermi-Dirac with identical temperatures, unlike the conventional distributions.

fields

hep-ph 1

years

2019 1

verdicts

ACCEPT 1

representative citing papers

Observing Dirac neutrinos in the cosmic microwave background

hep-ph · 2019-08-08 · accept · novelty 4.0

Future CMB Stage IV measurements of N_eff will detect or exclude thermally populated right-handed neutrino partners in most Dirac-neutrino models, constraining new gauge bosons and scalar mediators more strongly than laboratory searches.

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  • Observing Dirac neutrinos in the cosmic microwave background hep-ph · 2019-08-08 · accept · none · ref 81 · internal anchor

    Future CMB Stage IV measurements of N_eff will detect or exclude thermally populated right-handed neutrino partners in most Dirac-neutrino models, constraining new gauge bosons and scalar mediators more strongly than laboratory searches.