TL;DR
This paper explores the structure and implications of N=1 superconformal symmetry in four-dimensional quantum field theories, deriving covariant expressions for correlation functions and analyzing their physical consequences.
Contribution
It provides explicit superconformal covariant formulas for two and three point functions of superfields, connecting them with operator product expansion and anomaly equations.
Findings
Derived covariant expressions for two and three point functions.
Connected correlation functions with superconformal Ward identities.
Analyzed implications for supercurrent and scalar superfields.
Abstract
The implications of N=1 superconformal symmetry for four dimensional quantum field theories are studied. Superconformal covariant expressions for two and three point functions of quasi-primary superfields of arbitrary spin are found and connected with the operator product expansion. The general formulae are specialised to cases involving a scalar superfield L, which contains global symmetry currents, and the supercurrent, which contains the energy momentum tensor, and the consequences of superconformal Ward identities analysed. The three point function of L is shown to have unique completely antisymmetric or symmetric forms. In the latter case the superspace version of the axial anomaly equation is obtained. The three point function for the supercurrent is shown to have two linearly independent forms. A linear combination of the associated coefficients for the general expression is…
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