Planck Scale Unification in a Supersymmetric Standard Model
Abstract
We show how gauge coupling unification near the Planck scale GeV can be achieved in the framework of supersymmetry, facilitating a full unification of all forces with gravity. Below the conventional GUT scale GeV physics is described by a Supersymmetric Standard Model whose particle content is that of three complete representations of the gauge group . Above the conventional GUT scale the gauge group corresponds to a left-right symmetric Supersymmetric Pati-Salam model, which may be regarded as a ``surrogate SUSY GUT'' with all the nice features of SO(10) but without proton decay or doublet-triplet splitting problems. At the TeV scale the extra exotic states may be discovered at the LHC, providing an observable footprint of an underlying gauge group broken at the Planck scale. Assuming an additional low energy gauge group, identified as a non-trivial combination of diagonal generators, the problem of the MSSM can be resolved.
Cite
@article{arxiv.0705.0301,
title = {Planck Scale Unification in a Supersymmetric Standard Model},
author = {R. Howl and S. F. King},
journal= {arXiv preprint arXiv:0705.0301},
year = {2008}
}