Tribimaximal Mixing in the $SU(5) \times \mathcal{T}_{13}$ Texture
Abstract
We extend the recently proposed model for the asymmetric texture to the up-type quark and seesaw sectors. The hierarchical up-type quark masses are generated from higher-dimensional operators involving family-singlet Higgses, gauge-singlet familons, and vectorlike messengers. The complex-tribimaximal (TBM) seesaw mixing arises from the vacuum structure of a minimal number of familons, resulting in an alignment between the Yukawa and Majorana matrices of the seesaw formula. Introducing four right-handed neutrinos, normal ordering of the light neutrino masses is obtained, with , and . Their sum almost saturates Planck's cosmological upper bound ( ). The right-handed neutrino masses are expressed in terms of two parameters for a particular choice of familon vacuum alignment. We predict the Jarlskog-Greenberg invariant to be , consistent with the current PDG estimate, and Majorana invariants and . A sign ambiguity in the model parameters leads to two possibilities for the invariant mass parameter : or , both within an order of magnitude of the most rigorous experimental upper limit (-- ).
Keywords
Cite
@article{arxiv.2001.04019,
title = {Tribimaximal Mixing in the $SU(5) \times \mathcal{T}_{13}$ Texture},
author = {M. Jay Pérez and Moinul Hossain Rahat and Pierre Ramond and Alexander J. Stuart and Bin Xu},
journal= {arXiv preprint arXiv:2001.04019},
year = {2020}
}
Comments
36 pages, 2 figures, minor changes to match with the published version