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Leptogenesis and dark matter detection in a TeV scale neutrino mass model with inverted mass hierarchy
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abstract
Realization of the inverted hierarchy is studied in the radiative neutrino mass model with an additional doublet, in which neutrino masses and dark matter could be induced from a common particle. We show that the sufficient baryon number asymmetry is generated through resonant leptogenesis even for the case with rather mild degeneracy among TeV scale right-handed neutrinos. We also discuss the relation between this neutrino mass generation mechanism and low energy experiments for the DM direct search, the neutrinoless double $\beta$ decay and so on.
Forward citations
Cited by 3 Pith papers
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Spontaneous Scoto-leptogenesis
A rolling Majoron from broken global B-L symmetry generates the baryon asymmetry at TeV-scale right-handed neutrino masses in the scotogenic model, consistent with neutrino and dark matter constraints.
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Low-scale leptogenesis in the scotogenic model: spectator processes and benchmark points
TeV-scale leptogenesis in the scotogenic model is viable with proper treatment of spectator processes, yielding benchmark points that reproduce the baryon asymmetry and predict observable CLFV rates.
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Probing TeV-Scale Inverse-Seesaw Leptogenesis and Majorana Dark Matter in $U(1)_{B-L}$ Models at Multi-TeV Muon Colliders
Inverse-seesaw U(1)_{B-L} model correlates leptogenesis, Majorana DM relic density, and neutrino masses with collider signatures in dilepton and single-lepton channels.
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