Introduction to the BRS Cohomology of the Massless Wess Zumino Model: Cybersusy II
arXiv:0808.2263
Abstract
This paper is the second paper in a series of four papers that introduce cybersusy, which is a new method for analyzing supersymmetry breaking in the standard supersymmetric model (SSM). The first paper was a summary of the results and the three next papers set out the details. In this second paper, we derive the full BRS operator and action for the general massless Wess-Zumino chiral supersymmetry action. This includes the source terms which bring in the equations of motion. The auxiliary field is integrated, which removes manifest supersymmetry, but which allows the Legendre transform to operate correctly to define one-particle-irreducible vertices from the connected Green's functions. Then some special terms in the BRS cohomology are described, together with the constraint equations that they must satisfy. These `simple dotspinors' are generated by a `fundamental dotspinor', which is constructed partly from the Zinn sources. The equations of motion play a very important role in the cohomology for this theory. These dotspinors play an interesting role in the BRS cohomology of the standard model, which is the subject of the third paper in the series.
47 pages
References in corpus (4)
- Some Composite Hadrons and Leptons which induce Supersymmetry Breaking in the Supersymmetric Standard Model: Cybersusy III
- Supersymmetry Breaks when Gauge Symmetry Breaks: Cybersusy I
- 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
Cited by in corpus (6)
- Detailed Calculations of the Mass Spectrum for the Leptons after Supersymmetry Breaking in the Supersymmetric Standard Model: Cybersusy IV
- Some Composite Hadrons and Leptons which induce Supersymmetry Breaking in the Supersymmetric Standard Model: Cybersusy III
- Supersymmetry Breaks when Gauge Symmetry Breaks: Cybersusy I
- 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