Sterile neutrino dark matter bounds from galaxies of the Local Group
arXiv:1311.0282 · doi:10.1103/PhysRevD.89.025017
Abstract
We show that the canonical oscillation-based (non-resonant) production of sterile neutrino dark matter is inconsistent at % confidence with observations of galaxies in the Local Group. We set lower limits on the non-resonant sterile neutrino mass of keV (equivalent to keV thermal mass) using phase-space densities derived for dwarf satellite galaxies of the Milky Way, as well as limits of keV (equivalent to keV thermal mass) based on subhalo counts of -body simulations of M 31 analogues. Combined with improved upper mass limits derived from significantly deeper X-ray data of M 31 with full consideration for background variations, we show that there remains little room for non-resonant production if sterile neutrinos are to explain % of the dark matter abundance. Resonant and non-oscillation sterile neutrino production remain viable mechanisms for generating sufficient dark matter sterile neutrinos.
10 pages, 4 figures, 2 tables. Submitted to PRD