The WZNW Model at Two Loops

Abstract

We study perturbatively the (conformal) WZNW model. At one loop we compute one-particle irreducible two- and three-point current correlation functions, both in the conventional version and in the classically equivalent, chiral, nonlocal, induced version of the model. At two loops we compute the two-point function and find that it vanishes (modulo infrared-induced logarithms). We use dimensional regularization and the $R^*$ operation for removing infrared divergences. The outcome of the calculations is insensitive to the treatment of the $\varepsilon^{\m\n}$ tensor as a two-dimensional or $d$-dimensional object. Our results indicate that the one-particle irreducible current correlation functions constitute an effective action equal to the original WZNW action with the familiar level shift, $k\to k+\tilde h$.

Keywords

hep-th

Citation

Wit, B D, Grisaru, M T & Nieuwenhuizen, P V 1993, 'The WZNW Model at Two Loops', Nuclear Physics B, vol. 408, no. 2, pp. 299-342. https://doi.org/10.1016/0550-3213(93)90537-Y