Phenomenology of SUSY SU(5) GUT with neutrinophilic Higgs
arXiv:1204.4254 · doi:10.1103/PhysRevD.86.015019
Abstract
Among three typical energy scales, a neutrino mass scale ( 0.1 eV), a GUT scale ( GeV), and a TeV-scale ( 1 TeV), there is a fascinating relation of .The TeV-scale, , is a new physics scale beyond the standard model which is regarded as "supersymmetry" (SUSY) in this letter. We investigate phenomenology of SUSY SU(5) GUT with neutrinophilic Higgs, which realizes the above relation dynamically as well as the suitable magnitude of Dirac mass, , through a tiny vacuum expectation value of neutrinophilic Higgs. As a remarkable feature of this model, accurate gauge coupling unification can be achieved as keeping with a proton stability. We also evaluate flavor changing processes in quark/lepton sectors.
11 pages, 5 figures. arXiv admin note: substantial text overlap with arXiv:1107.4823
References in corpus (13)
- Observation of electron-antineutrino disappearance at Daya Bay
- New limit on the lepton-flavour violating decay mu -> e gamma
- A New Two Higgs Doublet Model
- LHC phenomenology of a two-Higgs-doublet neutrino mass model
- -Two Higgs Doublet Model and its Collider Phenomenology
- Comment on astrophysical consequences of a neutrinophilic 2HDM
- Low scale thermal leptogenesis in neutrinophilic Higgs doublet models
- TeV-scale seesaw from a multi-Higgs model
- Astrophysical Consequences of a Neutrinophilic Two-Higgs-Doublet Model
- Vacuum stability in neutrinophilic Higgs doublet model
- Quantum correction to tiny vacuum expectation value in two Higgs doublet model for Dirac neutrino mass
- Thermal leptogenesis in a supersymmetric neutrinophilic Higgs model
- Why is TeV-scale a geometric mean of neutrino mass and GUT-scale?