TeV-scale leptogenesis in a parity symmetric neutrino mass model
Keisuke Harigaya, Gio Leone
Abstract
We study leptogenesis via out-of-equilibrium decays of right-handed neutrinos in a parity symmetric extension of the Standard Model with gauge group SU(3)c × SU(2)L × SU(2)R × U(1)X, spontaneously broken to the Standard Model gauge group at a scale vR. We focus on the minimal Higgs realization, in which the strong CP problem is resolved without invoking additional symmetries. In this framework, lepton number is violated through Yukawa interactions, while neutrino masses arise only at higher loop order, a feature that permits the CP-violating quantum corrections to right-handed neutrino decays to be parametrically large. For thermal production of right-handed neutrinos, we find that successful leptogenesis requires vR 6× 1012 GeV. Non-thermal production, however, relaxes this bound dramatically, requiring only vR 10 TeV, a scale accessible to collider searches for new particles and searches for rare processes.
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