We study systematically, through two loops, the divergence structure of the supersymmetric WZ model defined on the N = 1/2 nonanticommutative superspace. By introducing a spurion field to represent the supersymmetry breaking term F-3 we are able to perform our calculations using conventional supergraph techniques. Divergent terms proportional to F, F-2 and F-3 are produced (the first two are to be expected on general grounds) but no higher-point divergences are found. By adding ab initio F and F-2 terms to the original lagrangian we render the model renormalizable. We determine the renormalization constants and beta functions through two loops, thus making it possible to study the renormalization group flow of the nonanticommutation parameter
Grisaru, M., Penati, S., Romagnoni, A. (2003). Two-loop renormalization for nonanticommutative N = 1/2 supersymmetric WZ model. JOURNAL OF HIGH ENERGY PHYSICS, 7(8), 59-87 [10.1088/1126-6708/2003/08/003].
Two-loop renormalization for nonanticommutative N = 1/2 supersymmetric WZ model
PENATI, SILVIA;
2003
Abstract
We study systematically, through two loops, the divergence structure of the supersymmetric WZ model defined on the N = 1/2 nonanticommutative superspace. By introducing a spurion field to represent the supersymmetry breaking term F-3 we are able to perform our calculations using conventional supergraph techniques. Divergent terms proportional to F, F-2 and F-3 are produced (the first two are to be expected on general grounds) but no higher-point divergences are found. By adding ab initio F and F-2 terms to the original lagrangian we render the model renormalizable. We determine the renormalization constants and beta functions through two loops, thus making it possible to study the renormalization group flow of the nonanticommutation parameterI documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.