arXiv:2302.09515·v2·High Energy Physics — Phenomenology
Sterile neutrino dark matter: relativistic freeze-out
Oleg Lebedev🇫🇮 · Takashi Toma🇯🇵
Abstract
Long-lived sterile neutrinos can play the role of dark matter. We consider the possibility that such neutrinos form a thermal bath with a singlet scalar, while not being in thermal equilibrium with the Standard Model fields. Eventually, the neutrino dark matter undergoes freeze-out in the dark sector, which can occur in both non-relativistic and relativistic regimes. To account for the latter possibility, we use the full Fermi-Dirac and Bose-Einstein distribution functions with effective chemical potential in the reaction rate computation. This allows us to study the freeze-out process in detail and also obtain the necessary thermalization conditions. We find that relativistic freeze-out occurs in a relatively small part of the parameter space. In contrast to the standard weakly-interacting-massive-particle (WIMP) scenario, the allowed dark matter masses extend to TeV without conflicting perturbativity.
Comments: 15 pages; references added, to appear in JHEP