Flavon alignments from orbifolding: $SU(5)\times SU(3)$ model with $\mathbb{T}^6/\Delta(54)$
Abstract
We systematically develop the formalism necessary for ensuring that boundary conditions of flavon fields in extra dimensions are consistent with heterotic string theory. Having developed a set of consistency conditions on the boundary conditions, we explore a series of examples of orbifolds in various dimensions to see which ones can satisfy them. In addition we impose the further phenomenological requirements of having non-trivial flavon vacuum alignments and also of having quarks and leptons located appropriately in extra dimensions. The minimal successful case seems to be a 10d theory with a gauged flavour symmetry, where the six-dimensional torus is compactified on a orbifold. We construct a realistic grand unified theory along these lines, leading to tribimaximal-reactor lepton mixing, which we show to be consistent with current neutrino data.
Cite
@article{arxiv.1910.04175,
title = {Flavon alignments from orbifolding: $SU(5)\times SU(3)$ model with $\mathbb{T}^6/\Delta(54)$},
author = {Francisco J. de Anda and Stephen F. King and Elena Perdomo and Patrick K. S. Vaudrevange},
journal= {arXiv preprint arXiv:1910.04175},
year = {2019}
}
Comments
37 pages, 3 figures. v2: references added, matches published version