Canonical BRST Quantisation of Worldsheet Gravities
Abstract
We reformulate the BRST quantisation of chiral Virasoro and worldsheet gravities. Our approach follows directly the classic BRST formulation of Yang-Mills theory in employing a derivative gauge condition instead of the conventional conformal gauge condition, supplemented by an introduction of momenta in order to put the ghost action back into first-order form. The consequence of these simple changes is a considerable simplification of the BRST formulation, the evaluation of anomalies and the expression of Wess-Zumino consistency conditions. In particular, the transformation rules of all fields now constitute a canonical transformation generated by the BRST operator , and we obtain in this reformulation a new result that the anomaly in the BRST Ward identity is obtained by application of the anomalous operator , calculated using operator products, to the gauge fermion.
Keywords
Cite
@article{arxiv.hep-th/9404170,
title = {Canonical BRST Quantisation of Worldsheet Gravities},
author = {R. Mohayaee and C. N. Pope and K. S. Stelle and K. W. Xu},
journal= {arXiv preprint arXiv:hep-th/9404170},
year = {2009}
}
Comments
27 pages. (Some factors of \hbar corrected)