Unified Maximally Natural Supersymmetry
Abstract
Maximally Natural Supersymmetry, an unusual weak-scale supersymmetric extension of the Standard Model based upon the inherently higher-dimensional mechanism of Scherk-Schwarz supersymmetry breaking (SSSB), possesses remarkably good fine tuning given present LHC limits. Here we construct a version with precision unification: is predicted to by unifying into a 5D theory at a Kaluza-Klein scale of , where SSSB is simultaneously realised. Full unification with is accommodated by extending the 5D theory to a supersymmetric gauge theory on a 6D rectangular orbifold at . TeV-scale states beyond the SM include exotic charged fermions implied by with masses lighter than , and squarks in the mass range , providing distinct signatures and discovery opportunities for LHC run II.
Keywords
Cite
@article{arxiv.1607.08622,
title = {Unified Maximally Natural Supersymmetry},
author = {Junwu Huang and John March-Russell},
journal= {arXiv preprint arXiv:1607.08622},
year = {2016}
}
Comments
33 pages, 7 figures