Higher-loop anomalies in chiral gravities
Abstract
The one-loop anomalies for chiral gravity are derived using the Fujikawa regularisation method. The expected two-loop anomalies are then obtained by imposing the Wess-Zumino consistency conditions on the one-loop results. The anomalies found in this way agree with those already known from explicit Feynman diagram calculations. We then directly verify that the order non-local BRST Ward identity anomalies, arising from the ``dressing'' of the one-loop results, satisfy Lam's theorem. It is also shown that in a rigorous calculation of anomaly for the BRST charge, one recovers both the non-local as well as the local anomalies. We further verify that, in chiral gravities, the non-local anomalies in the BRST Ward identity can be obtained by the application of the anomalous operator , calculated using operator products, to an appropriately defined gauge fermion. Finally, we give arguments to show why this relation should hold generally in reparametrisation-invariant theories.
Cite
@article{arxiv.hep-th/9505099,
title = {Higher-loop anomalies in chiral gravities},
author = {R. Mohayaee and L. Wenham},
journal= {arXiv preprint arXiv:hep-th/9505099},
year = {2009}
}
Comments
21 pages, latex, 12 figures as uuencoded postscript. To appear in Nucl. Phys. B