Article ID Journal Published Year Pages File Type
1852996 Physics Letters B 2014 7 Pages PDF
Abstract

We propose a scenario where the saxion dominates the energy density of the Universe and reheats the standard model sector via the dilatonic coupling, while its axionic partner contributes to dark matter decaying into photons via the same operator in supersymmetry. Interestingly, for the axion mass ma≃7 keVma≃7 keV and the decay constant fa≃1014–15 GeVfa≃1014–15 GeV, the recently discovered X-ray line at 3.5 keV3.5 keV in the XMM Newton X-ray observatory data can be explained. We discuss various cosmological aspects of the 7 keV7 keV axion dark matter such as the production of axion dark matter, the saxion decay process, hot dark matter and isocurvature constraints on the axion dark matter, and the possible baryogenesis scenarios.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Nuclear and High Energy Physics
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