Anomaly Matching Conditions and the Moduli Space of Supersymmetric Gauge Theories
arXiv:hep-th/9710024 · doi:10.1016/S0550-3213(97)00834-1
Abstract
The structure of the moduli space of N=1 supersymmetric gauge theories is analyzed from an algebraic geometric viewpoint. The connection between the fundamental fields of the ultraviolet theory, and the gauge invariant composite fields of the infrared theory is explained in detail. The results are then used to prove an anomaly matching theorem. The theorem is used to study anomaly matching for supersymmetric QCD, and can explain all the known anomaly matching results for this case.
28 pages revtex, amssymb
Cited by in corpus (5)
- Moduli Space of Global Symmetry in N=1 Supersymmetric Theories and the Quasi-Nambu-Goldstone Bosons
- New Confining N=1 Supersymmetric Gauge Theories
- Anomaly Matching and Syzygies in N=1 Gauge Theories
- Duality between simple-group gauge theories and some applications
- Discrete anomalies and the null cone of SYM theories