The Minimal GUT with Inflaton and Dark Matter Unification
Abstract
Giving up the solutions to the fine-tuning problems, we propose the non-supersymmetric flipped model based on the minimal particle content principle, which can be constructed from the four-dimensional models, five-dimensional orbifold models, and local F-theory models. To achieve gauge coupling unification, we introduce one pair of vector-like fermions, which form complete representation. Proton lifetime is around years, neutrino masses and mixing can be explained via seesaw mechanism, baryon asymmetry can be generated via leptogenesis, and vacuum stability problem can be solved as well. In particular, we propose that inflaton and dark matter particle can be unified to a real scalar field with symmetry, which is not an axion and does not have the non-minimal coupling to gravity. Such kind of scenarios can be applied to the generic scalar dark matter models. Also, we find that the vector-like particle corrections to the masses can be about 6.6%, while their corrections to the and masses are negligible.
Keywords
Cite
@article{arxiv.1703.07542,
title = {The Minimal GUT with Inflaton and Dark Matter Unification},
author = {Heng-Yu Chen and Ilia Gogoladze and Shan Hu and Tianjun Li and Lina Wu},
journal= {arXiv preprint arXiv:1703.07542},
year = {2018}
}
Comments
5 pages, 4 figures;V2: published version