Fermion masses and mixings in a renormalizable SO (10) × Z2 GUT

Author(s)
Walter Grimus, Helmut Kühböck
Abstract

We investigate a scenario in a supersymmetric SO (10) Grand Unified Theory in which the fermion mass matrices are generated by renormalizable Yukawa couplings of the 10 ? 120 ? over(126, -) representation of scalars. We reduce the number of parameters by assuming spontaneous CP violation and a Z2 family symmetry, leading to nine real Yukawa coupling constants for three families. Since in the "minimal SUSY SO (10) GUT" an intermediate seesaw scale is ruled out and our scenario lives in the natural extension of this theory by the 120, we identify the vacuum expectation value (VEV) wR of (10, 1, 3) ? over(126, -) with the GUT scale of 2 × 1016 GeV. In order to obtain sufficiently large neutrino masses, the coupling matrix of the scalar over(126, -) is necessarily small and we neglect type II seesaw contributions to the light-neutrino mass matrix. We perform a numerical analysis of this 21-parameter scenario and find an excellent fit to experimentally known fermion masses and mixings. We discuss the properties of our numerical solution, including a consistency check for the VEVs of the Higgs-doublet components in the SO (10) scalar multiplets. Œ 2006 Elsevier B.V. All rights reserved.

Organisation(s)
Particle Physics
Journal
Physics Letters. Section B: Nuclear, Elementary Particle and High-Energy Physics
Volume
643
Pages
182-189
No. of pages
8
ISSN
0370-2693
DOI
https://doi.org/10.1016/j.physletb.2006.10.038
Publication date
2006
Peer reviewed
Yes
Austrian Fields of Science 2012
103036 Theoretical physics
Portal url
https://ucris.univie.ac.at/portal/en/publications/fermion-masses-and-mixings-in-a-renormalizable-so-10--z2-gut(9b2fb5a7-1780-413f-bf35-25dcb42bc57d).html