Extended anti-de Sitter Hypergravity in $2+1$ Dimensions and Hypersymmetry Bounds
Abstract
In a recent paper (JHEP {\bf 1508} (2015) 021), we have investigated hypersymmetry bounds in the context of simple anti-de Sitter hypergravity in dimensions. We showed that these bounds involved non linearly the spin- and spin- charges, and were saturated by a class of extremal black holes, which are -hypersymmetric. We continue the analysis here by considering -extended anti-de Sitter hypergravity models, based on the superalgebra . The asymptotic symmetry superalgebra is then the direct sum of two-copies of a -superalgebra that contains (or ) Kac-Moody currents of conformal weight , fermionic generators of conformal weight and bosonic generators of conformal weight in addition to the Virasoro generators. The nonlinear hypersymmetry bounds on the conserved charges are derived and shown to be saturated by a class of extreme hypersymmetric black holes which we explicitly construct.
Keywords
Cite
@article{arxiv.1512.08603,
title = {Extended anti-de Sitter Hypergravity in $2+1$ Dimensions and Hypersymmetry Bounds},
author = {Marc Henneaux and Alfredo Pérez and David Tempo and Ricardo Troncoso},
journal= {arXiv preprint arXiv:1512.08603},
year = {2015}
}
Comments
To appear in the Proceedings of the workshop "Higher Spin Gauge Theories", Institute for Advanced Studies, NTU, Singapore, November 4-6, 2015