Stability of Leptonic Self-complementarity
arXiv:1209.1522 · doi:10.1209/0295-5075/101/11001
Abstract
We investigate a stability of leptonic self-complementarity such that sum of three mixing angles in lepton sector is 90 degrees. Renormalization group equations in a context of minimal supersymmetric standard model for the self-complementarity are analyzed. It is seen that one of Majorana phases plays an important role for the stability of self-complementarity. We find some stable solutions against quantum corrections at a low energy. An effective neutrino mass for neutrino-less double beta decay is also evaluated by the use of neutrino parameters giving rise to the stable solutions.
5 pages, 3 figures, version published in EPL
References in corpus (5)
- Observation of electron-antineutrino disappearance at Daya Bay
- Observation of Reactor Electron Antineutrino Disappearance in the RENO Experiment
- Indication of Electron Neutrino Appearance from an Accelerator-produced Off-axis Muon Neutrino Beam
- Indication for the disappearance of reactor electron antineutrinos in the Double Chooz experiment
- A Shift from Democratic to Tri-bimaximal Neutrino Mixing with Relatively Large theta_{13}
Cited by in corpus (8)
- Radiative Corrections to the Solar Lepton Mixing Sum Rule
- Determination of the mixing between active neutrinos and sterile neutrino through the quark-lepton complementarity and self-complementarity
- Accurate renormalization group analyses in neutrino sector
- An underlying symmetry determines all elements of CKM and PMNS up to a universal constant?
- Renormalization group invariants in neutrino sector
- Semi-Empirical Neutrino and Quark Mixing Angle Broken 4-Color Geometric Symmetry
- Implications of equalities among the elements of CKM and PMNS matrices
- The hidden symmetries in the PMNS matrix and the light sterile neutrino(s)