Quantum dilaton supergravity in 2D with non-minimally coupled matter
High Energy Physics - Theory
2007-05-23 v1
Abstract
General N=(1,1) dilaton supergravity in two dimensions allows a background independent exact quantization of the geometric part, if these theories are formulated as specific graded Poisson-sigma models. In this work the extension of earlier results to models with non-minimally coupled matter is presented. In particular, the modifications of the constraint algebra due to non-minimal couplings are calculated and it is shown that quartic ghost-terms do not arise. Consequently the path-integral quantization as known from bosonic theories and supergravity with minimally coupled matter can be taken over.
Cite
@article{arxiv.hep-th/0408229,
title = {Quantum dilaton supergravity in 2D with non-minimally coupled matter},
author = {L. Bergamin},
journal= {arXiv preprint arXiv:hep-th/0408229},
year = {2007}
}
Comments
8 pages. Contribution to the second international workshop "Gravity, Astrophysics and Strings at the Black Sea", June 10-16, 2004