Exact Supersymmetric String Solutions in Curved Gravitational Backgrounds
Abstract
We construct a new class of exact and stable superstring solutions based on superconformal world-sheet symmetry. In a subclass of these, the full spectrum of string excitations is derived in a modular-invariant way. In the weak curvature limit, our solutions describe a target space with non-trivial metric and topology, and generalize the previously known (semi) wormhole. The effective field theory limit is identified in certain cases, with solutions of the and extended gauged supergravities, in which the number of space-time supersymmetries is reduced by a factor of 2 because of the presence of non-trivial dilaton, gravitational and/or gauge backgrounds. In the context of string theory, our solutions correspond to stable non-critical superstrings in the strong coupling region; the super-Liouville field couples to a unitary matter system with central charge .
Cite
@article{arxiv.hep-th/9402073,
title = {Exact Supersymmetric String Solutions in Curved Gravitational Backgrounds},
author = {I. Antoniadis and S. Ferrara and C. Kounnas},
journal= {arXiv preprint arXiv:hep-th/9402073},
year = {2009}
}
Comments
37 pages, CERN-TH.7148/94 Additional comments were added concerning the ${\hat c}_M=5$ super-Liouville theory