Almost Maximally Broken Permutation Symmetry for Neutrino Mass Matrix

Author:

Kang Kyungsik1,Kang Sin Kyu2,Kim Jihn E.2,Ko Pyungwon3

Affiliation:

1. Department of Physics, Brown University, Providence, RI 02912, USA

2. Center for Theoretical Physics and Department of Physics, Seoul National University, Seoul 151-742, Korea

3. Department of Physics, Hong-Ik University, Seoul 121-791, Korea

Abstract

Assuming three light neutrinos are Majorana particles, we propose mass matrix ansatz for the charged leptons and Majorana neutrinos with family symmetry S3 broken into S1 and S2, respectively. Each matrix has three parameters, which are fixed by measured charged lepton masses, differences of squared neutrino masses relevant to the solar and the atmospheric neutrino puzzles, and the masses of three light Majorana neutrinos as a candidate for hot dark matter with ∑|mν|~ 6 eV . The resulting neutrino mixing is compatible with the data for the current upper limit, <mνe> th <0.7 eV , of neutrino-less double beta decay experiments, and the current data for various types of neutrino oscillation experiments. One solution of our model predicts that νμ→ντ oscillation probability is about < 0.008 with Δm2 ~ 10-2 eV 2, which may not be accessible at CHORUS and other on-going experiments.

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,Astronomy and Astrophysics,Nuclear and High Energy Physics

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