We extend the standard model by three types of inert fields including Majorana fermion singlets/triplets, real Higgs singlets/triplets and leptonic Higgs doublets. In the presence of a softly broken lepton number and an exactly conserved Z2 discrete symmetry, these inert fields together can mediate a one-loop diagram for a Majorana neutrino mass generation. The heavier inert fields can decay to realize a successful leptogenesis while the lightest inert field can provide a stable dark matter candidate. As an example, we demonstrate the leptogenesis by the inert Higgs doublet decays. We also perform a systematic study on the inert Higgs triplet dark matter scenario where the interference between the gauge and Higgs portal interactions can significantly affect the dark matter properties.
CITATION STYLE
Lu, W. B., & Gu, P. H. (2016). Leptogenesis, radiative neutrino masses and inert Higgs triplet dark matter. Journal of Cosmology and Astroparticle Physics, 2016(5). https://doi.org/10.1088/1475-7516/2016/05/040
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