Proton decay in a supersymmetric SO(10) model with missing partner mechanism
arXiv:1312.1786 · doi:10.1007/JHEP04(2014)027
Abstract
The extended supersymmetric SO(10) model with missing partner mechanism is studied. An intermediate vacuum expectation value is incorporated which corresponds to the see-saw scale. Gauge coupling unification is not broken explicitly. Proton decay is found to satisfy the present experimental limits at the cost of fine-tuning some parameters.
14 pages; Several improvements, References added
References in corpus (10)
- Fermion Masses in SO(10) Models
- Fermion masses and mixings in SO(10) models and the neutrino challenge to supersymmetric grand unified theories
- Proton lifetime bounds from chirally symmetric lattice QCD
- Higgs Masses in the Minimal SUSY SO(10) GUT
- Missing Partner Mechanism in SO(10) Grand Unification
- Baryon Stability on the Higgs Dissolution Edge : Threshold corrections and suppression of Baryon violation in the NMSGUT
- Proton Decay and Flavor Violating Thresholds in SO(10) Models
- Neutrino masses and mixings with non-zero in Type I+II Seesaw Models
- Correcting α_3(M_Z) in the NMSGUT
- A Renormalizable Supersymmetric SU(5) Model
Cited by in corpus (9)
- Dark Matter and Gauge Coupling Unification in Non-supersymmetric SO(10) Grand Unified Models
- An Analysis of B-L=-2 Operators from Matter-Higgs Interactions in a Class of Supersymmetric SO(10) Models
- A Renormalizable Supersymmetric SU(5) Model
- Connection between proton decay suppression and seesaw mechanism in supersymmetric SO(10) models
- Corrections to Yukawa couplings from higher dimensional operators in a natural SUSY and HL-LHC implications
- A renormalizable supersymmetric SO(10) model with natural doublet-triplet splitting
- A renormalizable supersymmetric SO(10) model
- Proton decay suppression in a supersymmetric SO(10) model
- Examining A Renormalizable Supersymmetric SO(10) Model