Flavor Hierarchies from Clockwork in SO(10) GUT
Abstract
The clockwork mechanism, which can naturally explain the origin of small numbers, is implemented in grand unified theories to address the origin of hierarchies in fermion masses and mixings. We show that a minimal Yukawa sector involving a and of Higgs bosons, extended with two clockwork chains consisting of vector-like fermions, can explain the hierarchical patterns with all the Yukawa couplings being of order one. Emergence of a realistic mass spectrum does not require any symmetry that distinguishes the three generations. We develop clockwork-extended GUTs both in the context of SUSY and non-SUSY frameworks. Implementation of the mechanism in non-SUSY scenario assumes a Peccei-Quinn symmetry realized at an intermediate scale, with the clockwork sector carrying non-trivial charges, which solves the strong CP problem and provides axion as a dark matter candidate.
Cite
@article{arxiv.2007.16085,
title = {Flavor Hierarchies from Clockwork in SO(10) GUT},
author = {K. S. Babu and Shaikh Saad},
journal= {arXiv preprint arXiv:2007.16085},
year = {2021}
}
Comments
22 pages + references; references are updated; Version to appear in PRD