Non-Perturbative Effects in Matrix Models and D-branes
Abstract
The large order growth of string perturbation theory in conformal field theory coupled to world sheet gravity implies the presence of non-perturbative effects, whose leading behavior can be calculated in the matrix model approach. Recently it was proposed that the same effects should be reproduced by studying certain localized D-branes in Liouville Field Theory, which were constructed by A. and Al. Zamolodchikov. We discuss this correspondence in a number of different cases: unitary minimal models coupled to Liouville, where we compare the continuum analysis to the matrix model results of Eynard and Zinn-Justin, and compact c=1 CFT coupled to Liouville in the presence of a condensate of winding modes, where we derive the matrix model prediction and compare it to Liouville theory. In both cases we find agreement between the two approaches. The c=1 analysis also leads to predictions about properties of D-branes localized in the vicinity of the tip of the cigar in SL(2)/U(1) CFT with c=26.
Keywords
Cite
@article{arxiv.hep-th/0306177,
title = {Non-Perturbative Effects in Matrix Models and D-branes},
author = {Sergei Yu. Alexandrov and Vladimir A. Kazakov and David Kutasov},
journal= {arXiv preprint arXiv:hep-th/0306177},
year = {2009}
}
Comments
27 pages, lanlmac; minor changes