3 research outputs found
A Simplest A4 Model for Tri-Bimaximal Neutrino Mixing
We present a see-saw model for Tri-Bimaximal mixing which is based on a
very economical flavour symmetry and field content and still possesses all the
good features of models. In particular the charged lepton mass
hierarchies are determined by the flavour symmetry itself
without invoking a Froggatt-Nielsen U(1) symmetry. Tri-Bimaximal mixing is
exact in leading order while all the mixing angles receive corrections of the
same order in next-to-the-leading approximation. As a consequence the predicted
value of is within the sensitivity of the experiments which will
take data in the near future. The light neutrino spectrum, typical of
see-saw models, with its phenomenological implications, also including
leptoproduction, is studied in detail.Comment: 20 pages, 2 figure
Phenomenology of Dark Matter from A4 Flavor Symmetry
We investigate a model in which Dark Matter is stabilized by means of a Z2
parity that results from the same non-abelian discrete flavor symmetry which
accounts for the observed pattern of neutrino mixing. In our A4 example the
standard model is extended by three extra Higgs doublets and the Z2 parity
emerges as a remnant of the spontaneous breaking of A4 after electroweak
symmetry breaking. We perform an analysis of the parameter space of the model
consistent with electroweak precision tests, collider searches and
perturbativity. We determine the regions compatible with the observed relic
dark matter density and we present prospects for detection in direct as well as
indirect Dark Matter search experiments.Comment: 15 pages, 4 figures.v2: minor modifications, matches version accepted
for publication in JHE