Connecting Radiative Neutrino Mass, Neutron-Antineutron Oscillation, Proton Decay, and Leptogenesis through Dark Matter
arXiv:1608.02118 · doi:10.1103/PhysRevD.94.111701
Abstract
The scotogenic mechanism for radiative neutrino mass is generalized to include neutron-antineutron oscillation as well as proton decay. Dark matter is stabilized by extending the notion of lepton parity to matter parity. Leptogenesis is also a possible byproduct. This framework unifies the description of all these important, but seemingly unrelated, topics in physics beyond the standard model of particle interactions.
11 pages, 4 figures
References in corpus (4)
- Extending the Standard Model Effective Field Theory with the Complete Set of Dimension-7 Operators
- Common Origin of Neutrino Mass, Dark Matter, and Baryogenesis
- Derivation of Dark Matter Parity from Lepton Parity
- Renormalization Group Evolution of Dimension-seven Baryon- and Lepton-number-violating Operators
Cited by in corpus (5)
- Two-loop Induced Majorana Neutrino Mass in a Radiatively Induced Quark and Lepton Mass Model
- Neutron-antineutron oscillations beyond the quasi-free limit
- Purely Triplet Seesaw and Leptogenesis within Cosmological Bound, Dark Matter and Vacuum Stability
- SU(5) unification of two triplet seesaw and leptogenesis with dark matter and vacuum stability
- Non-thermal leptogenesis with distinct CP violation and minimal dark matter