Supersymmetric AdS$_2\times \Sigma_2$ solutions from tri-sasakian truncation
Abstract
A class of , with being a two-sphere or a hyperbolic space, solutions within four-dimensional gauged supergravity coupled to three-vector multiplets with dyonic gauging is identified. The gauged supergravity has non-semisimple gauge group and can be obtained from a consistent truncation of eleven-dimensional supergravity on a tri-sasakian manifold. The maximally symmetric vacua contain geometries with supersymmetry corresponding to and superconformal field theories (SCFTs) in three dimensions. We find supersymmetric solutions of the form preserving two supercharges. These solutions describe twisted compactifications of the dual and SCFTs and should arise as near horizon geometries of dyonic black holes in asymptotically space-time. Most solutions have hyperbolic horizons although some of them exhibit spherical horizons. These provide a new class of geometries with known M-theory origin.
Keywords
Cite
@article{arxiv.1707.09633,
title = {Supersymmetric AdS$_2\times \Sigma_2$ solutions from tri-sasakian truncation},
author = {Parinya Karndumri},
journal= {arXiv preprint arXiv:1707.09633},
year = {2017}
}
Comments
31 pages, no figure, typos corrected, misleading words changed