Effective Potentials and Vacuum Structure in N=1 Supersymmetric Gauge Theories
Abstract
We derive the exact effective superpotential in 4d, N=1 supersymmetric SU(2) gauge theories with triplets and doublets of matter superfields. We find the quantum vacua of these theories; the equations of motion (for ) can be reorganized into the singularity conditions of an elliptic curve. From the phase transition points to the Coulomb branch, we find the exact Abelian gauge couplings, , for arbitrary bare masses and Yukawa couplings. We thus {\em derive} the result that is a section of an bundle over the moduli space and over the parameters space of bare masses and Yukawa couplings. For , we derive the exact effective superpotential in branches of supersymmetric gauge theories with one supermultiplet in the adjoint representation () and zero or one flavor (). We find the quantum vacua of these theories; the equations of motion can be reorganized into the singularity conditions of a genus hyperelliptic curve. Finally, we present the effective superpotential in the , cases.
Keywords
Cite
@article{arxiv.hep-th/9509130,
title = {Effective Potentials and Vacuum Structure in N=1 Supersymmetric Gauge Theories},
author = {S. Elitzur and A. Forge and A. Giveon and E. Rabinovici},
journal= {arXiv preprint arXiv:hep-th/9509130},
year = {2009}
}
Comments
62 pages