Antisymmetric tensor coupling and conformal invariance in sigma models corresponding to gauged WZNW theories
K. Sfetsos, A.A. Tseytlin

TL;DR
This paper derives exact gauge-invariant expressions for the metric, antisymmetric tensor, and dilaton in gauged WZNW models, demonstrating their conformal invariance at two loops and exploring scheme dependence and field redefinitions.
Contribution
It provides a gauge-invariant method to obtain antisymmetric tensor couplings and shows their conformal invariance at two loops in specific gauged WZNW models.
Findings
Exact expressions for G, B, and φ solve two-loop conformal invariance.
Semiclassical backgrounds can also satisfy two-loop equations with scheme adjustments.
Field redefinitions influence the correspondence between sigma models and conformal field theory.
Abstract
String backgrounds associated with gauged WZNW models generically depend on or . The exact expressions for the corresponding metric , antisymmetric tensor , and dilaton can be obtained by eliminating the gauge field from the local part of the effective action of the gauged WZNW model. We show that there exists a manifestly gauge-invariant prescription for the derivation of the antisymmetric tensor coupling. When the subgroup is one-dimensional and is simple the antisymmetric tensor is given by the semiclassical (-independent) expression. We consider in detail the simplest non-trivial example with non-trivial -- the D=3 sigma model corresponding to the gauged WZNW theory (`charged black string') and show that the exact expressions for , and solve the Weyl…
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