Supersymmetry Breaks when Gauge Symmetry Breaks: Cybersusy I
arXiv:0808.0811
Abstract
This paper summarizes a new approach to supersymmetry breaking in the supersymmetric standard model (SSM). The approach arises from some remarkable features of the BRS cohomology for composite operators in the SSM, and the behaviour of those operators when gauge symmetry is spontaneously broken. A new realization of supersymmetry arises for these operators. This realization is equivalent to the generation of supersymmetry anomalies, though they are not present in the usual sense. The consequences are worked out in detail for the electron and neutrino flavour triplets, by using the appropriate effective action to analyze the new anomalous realization of supersymmetry. This effective action generates a mass spectrum for leptons that is consistent with present experimental data. There is no vacuum energy problem, and no annoying mass sum rules are present.
41 pages
References in corpus (5)
- Introduction to the BRS Cohomology of the Massless Wess Zumino Model: Cybersusy II
- Some Composite Hadrons and Leptons which induce Supersymmetry Breaking in the Supersymmetric Standard Model: Cybersusy III
- Detailed Calculations of the Mass Spectrum for the Leptons after Supersymmetry Breaking in the Supersymmetric Standard Model: Cybersusy IV
- Composite Operators, Supersymmetry Anomalies and Supersymmetry Breaking in the Wess-Zumino Model
- BRS Cohomology, Composite Operators and the Supersymmetric Standard Model
Cited by in corpus (6)
- Detailed Calculations of the Mass Spectrum for the Leptons after Supersymmetry Breaking in the Supersymmetric Standard Model: Cybersusy IV
- Introduction to the BRS Cohomology of the Massless Wess Zumino Model: Cybersusy II
- Some Composite Hadrons and Leptons which induce Supersymmetry Breaking in the Supersymmetric Standard Model: Cybersusy III
- A supersymmetric version of the quark model, and supersymmetry breaking for the Leptons, Baryons and Hadronic Mesons: Cybersusy V
- Some Properties of Chiral Dotted Spinor Superfields
- Supersymmetry Breaks Itself for Quarks and Leptons in the SUSY Standard Model