arXiv:1504.00773·v3·High Energy Astrophysical Phenomena
Light Dark Matter and Dark Radiation
Jae Ho Heo🇰🇷 · C.S. Kim🇰🇷
Abstract
Light dark-matter ( MeV) particles freeze out after neutrino decoupling. If the dark-matter particle couples to a neutrino or an electromagnetic plasma, the late time entropy production from dark-matter annihilation can change the neutrino-to-photon temperature ratio, and equally the effective number of neutrinos . We study the non-equilibrium effects of dark-matter annihilation on the and the effects by using a thermal equilibrium approximation. Both results are constrained with Planck observations. We demonstrate that the lower bounds of the dark-matter mass and the possibilities of the existence of additional radiation particles are more strongly constrained for dark-matter annihilation process in non-equilibrium.
Comments: To appear in JKPS, 14 pages, 3 figures, 2 tables