Occam's Razor in Lepton Mass Matrices - The Sign of Universe's Baryon Asymmetry -
Yuya Kaneta, Yusuke Shimizu, Morimitsu Tanimoto, Tsutomu T. Yanagida

TL;DR
This paper proposes a minimal neutrino mass matrix model using Occam's Razor, successfully predicting neutrino mixing parameters and linking low-energy neutrino data to the universe's baryon asymmetry.
Contribution
It introduces a minimalistic neutrino mass matrix with four zeros, enabling precise predictions of neutrino mixing angles, CP phases, and the baryon asymmetry from low-energy experiments.
Findings
Predicted $ heta_{13}$ around 0.13-0.15, matching observations.
Favored $ heta_{CP}$ near $ ext{±}rac{ ext{π}}{2}$.
Estimated neutrinoless double-beta decay mass $m_{ee}$ around 7-8 meV.
Abstract
We discuss the neutrino mass matrix based on the Occam's Razor approach in the framework of the seesaw mechanism. We impose four zeros in the Dirac neutrino mass matrix, which give the minimum number of parameters needed for the observed neutrino masses and lepton mixing angles, while the charged lepton mass matrix and the right-handed Majorana neutrino mass matrix are taken to be real diagonal ones. The low-energy neutrino mass matrix has only seven physical parameters. We show successful predictions for the mixing angle and the CP violating phase with the normal mass hierarchy of neutrinos by using the experimental data on the neutrino mass squared differences, the mixing angles and . The most favored region of is around , which is completely consistent with the observed value. The CP violating…
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