Gluino mass from dynamical supersymmetry breaking
Abstract
We present a new mechanism for gluino mass generation in models of dynamical supersymmetry breaking. The mechanism requires two colored chiral superfields which feel a nonabelian gauge interaction such that a fermion condensate is formed at a scale of order 1 TeV. Renormalizable hidden sector models, which typically yield unacceptably light gauginos, become viable if a gauge singlet is coupled to these chiral superfields. Moreover, the interactions of the gauge singlet with the Higgs superfields substitute the -term. Visible sector models can also incorporate this mechanism; however, the models of dynamical supersymmetry breaking previously analyzed cannot be fitted in a simple visible sector model because they lead to vacuum expectation values for charged scalars.
Cite
@article{arxiv.hep-ph/9510424,
title = {Gluino mass from dynamical supersymmetry breaking},
author = {Bogdan A. Dobrescu},
journal= {arXiv preprint arXiv:hep-ph/9510424},
year = {2016}
}
Comments
17 pages, latex. A statement regarding the discrete symmetry is revised. Version accepted for publication in Phys.Rev.D