Toy Model for Breaking Super Gauge Theories at the Effective Lagrangian Level
arXiv:hep-th/9708113 · doi:10.1103/PhysRevD.57.170
Abstract
We propose a toy model to illustrate how the effective Lagrangian for super QCD might go over to the one for ordinary QCD by a mechanism whereby the gluinos and squarks in the fundamental theory decouple below a given supersymmetry breaking scale . The implementation of this approach involves a suitable choice of possible supersymmetry breaking terms. An amusing feature of the model is the emergence of the ordinary QCD degrees of freedom which were hidden in the auxiliary fields of the supersymmetric effective Lagrangian.
21 pages (ReVTeX), 1 PostScript Figure
References in corpus (5)
Cited by in corpus (16)
- Enhanced Global Symmetries and The Chiral Phase Transition
- Effective Lagrangians for Orientifold Theories
- The Superfluid and Conformal Phase Transitions of Two-Color QCD
- Chiral Phase Transition for SU(N) Gauge Theories via an Effective Lagrangian Approach
- Enhanced Global Symmetry Constraints on epsilon Terms
- Polyakov Loops versus Hadronic States
- Domain Walls and Theta Dependence in QCD with an Effective Lagrangian Approach
- Critical Behavior of Non Order-Parameter Fields
- Anomaly induced QCD potential and Quark Decoupling
- A Note on effective N=1 Super Yang-Mills Theories versus Lattice Results
- The Glueball sector of two-flavor Color Superconductivity
- Extending the Veneziano-Yankielowicz Effective Theory
- Partial Deconfinement in Color Superconductivity
- Chiral symmetry breaking and effective lagrangians for softly broken supersymmetric QCD
- Duality Symmetry in Softly Broken N=2 Gauge Theories
- About flavor, spin and color