Matter inflation with A_4 flavour symmetry breaking
Abstract
We discuss model building in tribrid inflation, which is a framework for realising inflation in the matter sector of supersymmetric particle physics models. The inflaton is a D-flat combination of matter fields, and inflation ends by a phase transition in which some Higgs field obtains a vacuum expectation value. We first describe the general procedure for implementing tribrid inflation in realistic models of particle physics that can be applied to a wide variety of BSM particle physics models around the GUT scale. We then demonstrate how the procedure works for an explicit lepton flavour model based on an A_4 family symmetry. The model is both predictive and phenomenologically viable, and illustrates how tribrid inflation connects cosmological and particle physics parameters. In particular, it predicts a relation between the neutrino Yukawa coupling and the running of the spectral index alpha_s. We also show how topological defects from the flavour symmetry breaking can be avoided automatically.
Keywords
Cite
@article{arxiv.1306.3501,
title = {Matter inflation with A_4 flavour symmetry breaking},
author = {Stefan Antusch and David Nolde},
journal= {arXiv preprint arXiv:1306.3501},
year = {2013}
}
Comments
26 pages, 4 figures, v2 matches publication in JCAP