arXiv · hep-th/9603158
Dynamical Supersymmetry Breaking on Quantum Moduli Spaces
Abstract
Supersymmetry breaking by the quantum deformation of a classical moduli space is considered. A simple, non-chiral, renormalizable model is presented to illustrate this mechanism. The well known, chiral, $SU(3) \times SU(2)$ model and its generalizations are shown to break supersymmetry by this mechanism in the limit $Λ_2 \gg Λ_3$. Other supersymmetry breaking models, with classical flat directions that are only lifted quantum mechanically, are presented. Finally, by integrating in vector matter, the strongly coupled region of chiral models with a dynamically generated superpotential is shown to be continuously connected to a weakly coupled description in terms of confined degrees of freedom, with supersymmetry broken at tree level.
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Kenneth Intriligator, Scott Thomas. 1996-03-24. Dynamical Supersymmetry Breaking on Quantum Moduli Spaces. https://doi.org/10.1016/0550-3213(96)00261-1
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