Realistic Flipped SU(5) from Orbifold SO(10)
arXiv:0911.1006 · doi:10.1007/JHEP02(2010)096
Abstract
We propose a realistic flipped SU(5) model derived from a five-dimensional orbifold SO(10) model. The Standard Model (SM) fermion masses and mixings are explained by combining the traditional Froggatt-Nielsen mechanism with the five-dimensional wave function profiles of the SM fermions. Employing tree-level spontaneous R-symmetry breaking in the hidden sector and extra(ordinary) gauge mediation, we obtain realistic supersymmetry breaking soft mass terms with non-vanishing gaugino masses. Including the messenger fields at the intermediate scale and Kaluza-Klein states at the compactification scale, we study gauge coupling unification. We show that the SO(10) unified gauge coupling is very strong and the unification scale can be much higher than the compactification scale. We briefly discuss proton decay as well.
25 pages, 1 fig
References in corpus (13)
- Dynamical SUSY Breaking in Meta-Stable Vacua
- Lectures on Supersymmetry Breaking
- Notes on SUSY and R-Symmetry Breaking in Wess-Zumino Models
- (Extra)Ordinary Gauge Mediation
- Some properties of meta-stable supersymmetry-breaking vacua in Wess-Zumino models
- Implementing General Gauge Mediation
- Multiple Membranes from Gauged Supergravity
- Axions in Gauge Mediation
- Naturally Flavorful Supersymmetry at the LHC
- Flavour Physics and Grand Unification
- A Simple and Realistic Model of Supersymmetry Breaking
- The SU(3)_C * SU(4)_W * U(1)_{B-L} Models with Left-Right Unification
- Low-Scale SU(4)_W Unification
Cited by in corpus (5)
- Flavor Structures of Quarks and Leptons from Flipped SU(5) GUT with Modular Flavor Symmetry
- Supersymmetry Breaking Scalar Masses and Trilinear Soft Terms From High-Dimensional Operators in E_6 SUSY GUT
- Natural SUSY from SU(5) Orbifold GUT
- Generalized Froggatt-Nielsen Mechanism
- SU(7) Unification of SU(3)_C*SU(4)_W* U(1)_{B-L}