Anarchy and Neutrino Physics
Abstract
The neutrino sector of a seesaw-extended Standard Model is investigated under the anarchy hypothesis. The previously derived probability density functions for neutrino masses and mixings, which characterize the type I-III seesaw ensemble of complex random matrices, are used to extract information on the relevant physical parameters. For and , the distributions of the light neutrino masses, as well as the mixing angles and phases, are obtained using numerical integration methods. A systematic comparison with the much simpler type II seesaw ensemble is also performed to point out the fundamental differences between the two ensembles. It is found that the type I-III seesaw ensemble is better suited to accommodate experimental data. Moreover, the results indicate a strong preference for the mass splitting associated to normal hierarchy. However, since all permutations of the singular values are found to be equally probable for a particular mass splitting, predictions regarding the hierarchy of the mass spectrum remains out of reach in the framework of anarchy.
Cite
@article{arxiv.1702.07273,
title = {Anarchy and Neutrino Physics},
author = {Jean-François Fortin and Nicolas Giasson and Luc Marleau},
journal= {arXiv preprint arXiv:1702.07273},
year = {2018}
}
Comments
1+22 pages, 8 figures, typos fixed, added reference