Grand unification in the minimal left-right symmetric extension of the standard model
arXiv:1208.3599 · doi:10.1134/S1547477113020143
Abstract
The simplest minimal left-right symmetric extension of the standard model is studied in the high energy limit, and some consequences of the grand unification hypothesis are explored assuming that the parity breaking scale is the only relevant energy between the electro-weak scale and the unification point. While the model is shown to be compatible with the observed neutrino phenomenology, the parity breaking scale and the heavy boson masses are predicted to be above 10^7 TeV, quite far from the reach of nowadays experiments. Below that scale only an almost sterile right handed neutrino is allowed with a mass M \approx 100 TeV.
References in corpus (6)
- Electroweak Corrections in High Energy Processes using Effective Field Theory
- TeV scale Left Right Symmetry with spontaneous D-parity breaking
- Universal Seesaw from Left-Right and Peccei-Quinn Symmetry Breaking
- Self-consistent variational approach to the minimal left-right symmetric model of electroweak interactions
- Type II see-saw dominance in SO(10)
- Spontaneous parity violation and minimal Higgs models