English

Origin of Constrained Maximal CP Violation in Flavor Symmetry

High Energy Physics - Phenomenology 2015-11-23 v3 High Energy Physics - Experiment

Abstract

Current data from neutrino oscillation experiments are in good agreement with δ=π2\delta =-\frac{\pi}{2} and θ23=π4\theta_{23}^{} = \frac{\pi}{4}. We define the notion of "constrained maximal CP violation" (CMCPV) for predicting these features and study their origin in flavor symmetry. We derive the parametrization-independent solution of CMCPV and give a set of equivalent definitions for it. We further present a theorem on how the CMCPV can be realized. This theorem takes advantage of residual symmetries in the neutrino and charged lepton mass matrices, and states that, up to a few minor exceptions, (δ,θ23)=(π2,π4)(|\delta |, \theta_{23}) =(\frac{\pi}{2}, \frac{\pi}{4}) is generated when those symmetries are real. The often considered μ\mu-τ\tau reflection symmetry, as well as specific discrete subgroups of O(3), are special cases of our theorem.

Keywords

Cite

@article{arxiv.1507.03541,
  title  = {Origin of Constrained Maximal CP Violation in Flavor Symmetry},
  author = {Hong-Jian He and Werner Rodejohann and Xun-Jie Xu},
  journal= {arXiv preprint arXiv:1507.03541},
  year   = {2015}
}

Comments

Phys.Lett.B Final Version, 13pp. All conclusions unchanged, only minor improvement to stress the parametrization-independence of our CMCPV