Thermal leptogenesis in SO(10) × U(1)A SUSY GUT
Nobuhiro Maekawa, Kei Shibata, Masato Yamanaka
A
bstract
We investigate thermal leptogenesis within a supersymmetric grand unified theory (SUSY GUT) based on the
SO
(10) ×
U
(1)
A
symmetry, where both the doublet-triplet splitting problem and the unrealistic Yukawa relations are resolved under the natural assumption that all symmetry-allowed interactions appear with 𝒪(1) coefficients. In this framework, the structures of the Dirac neutrino Yukawa couplings and right-handed neutrino masses are determined entirely by the symmetry. The baryon asymmetry of the Universe is computed taking into account the flavor effects, Higgs asymmetry contributions, and the impact of the second-lightest right-handed neutrino. While the predicted asymmetry is too small when all 𝒪(1) coefficients of the Dirac neutrino Yukawa couplings are set to unity, a moderate enhancement factor
r
1
~ 5
.
4 for the lightest right-handed neutrino mass reproduces the observed baryon asymmetry without spoiling low-energy neutrino data. This corresponds to a suppressed lightest neutrino mass,