Astrophysical constraints on resonantly produced sterile neutrino dark matter
Abstract
Resonantly produced sterile neutrinos are considered an attractive dark matter (DM) candidate only requiring a minimal, well motivated extension to the standard model of particle physics. With a particle mass restricted to the keV range, sterile neutrinos are furthermore a prime candidate for warm DM, characterised by suppressed matter perturbations at the smallest observable scales. In this paper we take a critical look at the validity of the resonant scenario in the context of constraints from structure formation. We compare predicted and observed number of Milky-Way satellites and we introduce a new method to generalise existing Lyman- limits based on thermal relic warm DM to the case of resonant sterile neutrino DM. The tightest limits come from the Lyman- analysis, excluding the entire parameter space (at 2- confidence level) still allowed by X-ray observations. Constraints from Milky-Way satellite counts are less stringent, leaving room for resonant sterile neutrino DM most notably around the suggested line signal at 7.1 keV.
Keywords
Cite
@article{arxiv.1601.07553,
title = {Astrophysical constraints on resonantly produced sterile neutrino dark matter},
author = {Aurel Schneider},
journal= {arXiv preprint arXiv:1601.07553},
year = {2016}
}
Comments
minor changes, matches published version