Published May 2013 | Version v1
Journal article

Neutrino mass and mixing with discrete symmetry

  • 1. Department of Physics and Astronomy, University of Southampton, Southampton, SO17 1BJ (United Kingdom)
  • 2. Institute for Particle Physics Phenomenology, University of Durham, Durham, DH1 3LE (United Kingdom)

Description

This is a review paper about neutrino mass and mixing and flavour model building strategies based on discrete family symmetry. After a pedagogical introduction and overview of the whole of neutrino physics, we focus on the PMNS mixing matrix and the latest global fits following the Daya Bay and RENO experiments which measure the reactor angle. We then describe the simple bimaximal, tri-bimaximal and golden ratio patterns of lepton mixing and the deviations required for a non-zero reactor angle, with solar or atmospheric mixing sum rules resulting from charged lepton corrections or residual trimaximal mixing. The different types of see-saw mechanism are then reviewed as well as the sequential dominance mechanism. We then give a mini-review of finite group theory, which may be used as a discrete family symmetry broken by flavons either completely, or with different subgroups preserved in the neutrino and charged lepton sectors. These two approaches are then reviewed in detail in separate chapters including mechanisms for flavon vacuum alignment and different model building strategies that have been proposed to generate the reactor angle. We then briefly review grand unified theories (GUTs) and how they may be combined with discrete family symmetry to describe all quark and lepton masses and mixing. Finally, we discuss three model examples which combine an SU(5) GUT with the discrete family symmetries A4, S4 and Δ(96). (review article)

Availability note (English)

Available from http://dx.doi.org/10.1088/0034-4885/76/5/056201

Additional details

Publishing Information

Journal Title
Reports on Progress in Physics
Journal Volume
76
Journal Issue
5
Journal Page Range
[50 p.]
ISSN
0034-4885
CODEN
RPPHAG