Dirac neutrinos and $N_{{\rm eff}}$ II: the freeze-in case
Abstract
We discuss Dirac neutrinos whose right-handed component has new interactions that may lead to a measurable contribution to the effective number of relativistic neutrino species . We aim at a model-independent and comprehensive study on a variety of possibilities. Processes for -genesis from decay or scattering of thermal species, with spin-0, spin-1/2, or spin-1 initial or final states are all covered. We calculate numerically and analytically the contribution of to primarily in the freeze-in regime, since the freeze-out regime has been studied before. While our approximate analytical results apply only to freeze-in, our numerical calculations work for freeze-out as well, including the transition between the two regimes. Using current and future constraints on , we obtain limits and sensitivities of CMB experiments on masses and couplings of the new interactions. As a by-product, we obtain the contribution of Higgs-neutrino interactions, , assuming the neutrino mass is 0.1 eV and generated by the standard Higgs mechanism.
Keywords
Cite
@article{arxiv.2011.13059,
title = {Dirac neutrinos and $N_{{\rm eff}}$ II: the freeze-in case},
author = {Xuheng Luo and Werner Rodejohann and Xun-Jie Xu},
journal= {arXiv preprint arXiv:2011.13059},
year = {2021}
}
Comments
29 pages, 6 figures, comments on non-thermal distributions added, JCAP published version