Non-Supersymmetric Membrane Flows from Fake Supergravity and Multi-Trace Deformations
Abstract
We use fake supergravity as a solution generating technique to obtain a continuum of non-supersymmetric asymptotically domain wall solutions of eleven-dimensional supergravity with non-trivial scalars in the coset. These solutions are continuously connected to the supersymmetric domain walls describing a uniform sector of the Coulomb branch of the -brane theory. We also provide a general argument that under certain conditions identifies the fake superpotential with the exact large-N quantum effective potential of the dual theory, describing a marginal multi-trace deformation. This identification strongly motivates further study of fake supergravity as a solution generating method and it allows us to interpret our non-supersymmetric solutions as a family of marginal triple-trace deformations of the Coulomb branch that completely break supersymmetry and to calculate the exact large-N anomalous dimensions of the operators involved. The holographic one- and two-point functions for these solutions are also computed.
Cite
@article{arxiv.hep-th/0606038,
title = {Non-Supersymmetric Membrane Flows from Fake Supergravity and Multi-Trace Deformations},
author = {Ioannis Papadimitriou},
journal= {arXiv preprint arXiv:hep-th/0606038},
year = {2010}
}
Comments
45 pages; v2 minor corrections, Section 8 revised, an appendix and references added; v3 expanded discussion of one- and two-point functions. Version to appear in JHEP