In a minimal SO(10) model with type-I seesaw dominance, decays of the electroweak triplet scalar can dominate baryogenesis and make leptogenesis viable.
Baryon Asymmetry and Neutrino Mixing
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abstract
In theories where $B-L$ is a spontaneously broken local symmetry, the cosmological baryon asymmetry can be generated by the out-of-equilibrium decay of heavy Majorana neutrinos. We study this mechanism assuming a similar pattern of mixings and masses for leptons and quarks, as suggested by SO(10) unification. This implies that $B-L$ is broken at the unification scale $\Lambda_{\mbox{\scriptsize GUT}}\sim 10^{16}$ GeV, if $m_{\n_\m} \sim 3\cdot 10^{-3}$eV as preferred by the MSW explanation of the solar neutrino deficit. The observed value of the baryon asymmetry, $n_B/s \sim 10^{-10}$, is then obtained without any fine tuning of parameters.
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Electroweak Triplet Scalar Contribution to $SO(10)$ Leptogenesis
In a minimal SO(10) model with type-I seesaw dominance, decays of the electroweak triplet scalar can dominate baryogenesis and make leptogenesis viable.