Self-dual tensors and gravitational anomalies in 4n+2 dimensions
Abstract
Starting from a manifestly Lorentz- and diffeomorphism-invariant classical action we perform a perturbative derivation of the gravitational anomalies for chiral bosons in 4n+2 dimensions. The manifest classical invariance is achieved using a newly developed method based on a scalar auxiliary field and two new bosonic local symmetries. The resulting anomalies coincide with the ones predicted by the index theorem. In the two-dimensional case, moreover, we perform an exact covariant computation of the effective action for a chiral boson (a scalar) which is seen to coincide with the effective action for a two-dimensional complex Weyl-fermion. All these results support the quantum reliability of the new, at the classical level manifestly invariant, method.
Keywords
Cite
@article{arxiv.hep-th/9808025,
title = {Self-dual tensors and gravitational anomalies in 4n+2 dimensions},
author = {Kurt Lechner},
journal= {arXiv preprint arXiv:hep-th/9808025},
year = {2009}
}
Comments
20 pages, references added, misprints corrected