English

Extended anti-de Sitter Hypergravity in $2+1$ Dimensions and Hypersymmetry Bounds

High Energy Physics - Theory 2015-12-31 v1 General Relativity and Quantum Cosmology

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 2+12+1 dimensions. We showed that these bounds involved non linearly the spin-22 and spin-44 charges, and were saturated by a class of extremal black holes, which are 14\frac14-hypersymmetric. We continue the analysis here by considering (M,N)(M,N)-extended anti-de Sitter hypergravity models, based on the superalgebra osp(M4)osp(N4)osp(M \vert 4) \oplus osp(N \vert 4). The asymptotic symmetry superalgebra is then the direct sum of two-copies of a WW-superalgebra that contains so(M)so(M) (or so(N)so(N)) Kac-Moody currents of conformal weight 11, fermionic generators of conformal weight 5/25/2 and bosonic generators of conformal weight 44 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