Baryogenesis through leptogenesis in the minimal flipped $SU(5)$ with radiative seesaw
Abstract
The minimal flipped unification with the right-handed neutrino Majorana mass scale generated as a two-loop effect is arguably one of the most constrained models of perturbative baryon and lepton number violation currently on the market. This is namely due to its very simple scalar sector structure which, subject to perturbativity and non-tachyonicity bounds, leads to the emergence of characteristic flavour patterns providing interesting insights into proton decay phenomenology, neutrino physics etc. In this contribution, we discuss the potential impact of the baryon asymmetry of the Universe as an additional requirement imposed onto the already strongly constrained flavour structure of the model, focusing on thermal leptogenesis as its hypothetical primary source in this framework. Remarkably, this single extra condition leads, among other things, to a very interesting upper limit on the absolute neutrino mass scale which, in turn, renders the model potentially testable in the existing beta-decay experiments such as KATRIN.
Keywords
Cite
@article{arxiv.2506.23113,
title = {Baryogenesis through leptogenesis in the minimal flipped $SU(5)$ with radiative seesaw},
author = {Michal Malinský and Renato Fonseca and Václav Miřátský and Martin Zdráhal},
journal= {arXiv preprint arXiv:2506.23113},
year = {2025}
}
Comments
7 pages, 2 figures; submitted to the Proceedings of the Corfu Summer Institute 2024 "School and Workshops on Elementary Particle Physics and Gravity" (CORFU2024) 12 - 26 May, and 25 August - 27 September, 2024, Corfu, Greece