English

Renormalization Group Running of the Neutrino Mass Operator in Extra Dimensions

High Energy Physics - Phenomenology 2014-04-16 v3

Abstract

We study the renormalization group (RG) running of the neutrino masses and the leptonic mixing parameters in two different extra-dimensional models, namely, the Universal Extra Dimensions (UED) model and a model, where the Standard Model (SM) bosons probe an extra dimension and the SM fermions are confined to a four-dimensional brane. In particular, we derive the beta function for the neutrino mass operator in the UED model. We also rederive the beta function for the charged-lepton Yukawa coupling, and confirm some of the existing results in the literature. The generic features of the RG running of the neutrino parameters within the two models are analyzed and, in particular, we observe a power-law behavior for the running. We note that the running of the leptonic mixing angle \theta_{12} can be sizable, while the running of \theta_{23} and \theta_{13} is always negligible. In addition, we show that the tri-bimaximal and the bimaximal mixing patterns at a high-energy scale are compatible with low-energy experimental data, while a tri-small mixing pattern is not. Finally, we perform a numerical scan over the low-energy parameter space to infer the high-energy distribution of the parameters. Using this scan, we also demonstrate how the high-energy \theta_{12} is correlated with the smallest neutrino mass and the Majorana phases.

Keywords

Cite

@article{arxiv.1101.2585,
  title  = {Renormalization Group Running of the Neutrino Mass Operator in Extra Dimensions},
  author = {Mattias Blennow and Henrik Melbeus and Tommy Ohlsson and He Zhang},
  journal= {arXiv preprint arXiv:1101.2585},
  year   = {2014}
}

Comments

20 pages, 5 figures, REVTeX4-1. (v2) Final version published in J. High Energy Phys. (v3) A short clarification at the end of the appendix has been added