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arXiv · 1305.3200

Lepton Mixing Predictions from Delta(6n^2) Family Symmetry

Abstract

We obtain predictions of lepton mixing parameters for direct models based on Delta(6n^2) family symmetry groups for arbitrarily large n in which the full Klein symmetry is identified as a subgroup of the family symmetry. After reviewing and developing the group theory associated with Delta(6n^2), we find many new candidates for large n able to yield reactor angle predictions within 3 sigma of recent global fits. We show that such Delta(6n^2) models with Majorana neutrinos predict trimaximal mixing with reactor angle theta_{13} fixed up to a discrete choice, an oscillation phase of either zero or pi and the atmospheric angle sum rules theta_{23}=45 degrees -/+ theta_{13}/sqrt{2}, respectively, which are consistent with recent global fits and will be tested in the near future.

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Stephen F. King, Thomas Neder, Alexander J. Stuart. 2013-09-09. Lepton Mixing Predictions from Delta(6n^2) Family Symmetry. https://doi.org/10.1016/j.physletb.2013.08.052

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