String Beta Function Equations From c=1 Matrix Model
Abstract
We derive the -model tachyon -function equation of 2-dimensional string theory, in the background of flat space and linear dilaton, working entirely within the matrix model. The tachyon -function equation is satisfied by a \underbar{nonlocal} and \underbar{nonlinear} combination of the (massless) scalar field of the matrix model. We discuss the possibility of describing the `discrete states' as well as other possible gravitational and higher tensor backgrounds of 2-dimensional string theory within the matrix model. We also comment on the realization of the -infinity symmetry of the matrix model in the string theory. The present work reinforces the viewpoint that a nonlocal (and nonlinear) transform is required to extract the space-time physics of 2-dimensional string theory from the matrix model.
Cite
@article{arxiv.hep-th/9503172,
title = {String Beta Function Equations From c=1 Matrix Model},
author = {Avinash Dhar and Gautam Mandal and Spenta R. Wadia},
journal= {arXiv preprint arXiv:hep-th/9503172},
year = {2009}
}
Comments
18 pages, latex, no figures (typos corrected, version to appear in Nucl Phys. B)