Static M-horizons
arXiv:1106.3085 · doi:10.1007/JHEP01(2012)005
Abstract
We determine the geometry of all static black hole horizons of M-theory preserving at least one supersymmetry. We demonstrate that all such horizons are either warped products R^{1,1} *_w S or AdS_2 *_w S, where S admits an appropriate Spin(7) or SU(4) structure respectively; and we derive the conditions imposed by supersymmetry on these structures. We show that for electric static horizons with Spin(7) structure, the near horizon geometry is a product R^{1,1} * S, where S is a compact Spin(7) holonomy manifold. For electric static solutions with SU(4) structure, we show that the horizon section S is a circle fibration over an 8-dimensional Kahler manifold which satisfies an additional condition involving the Ricci scalar and the length of the Ricci tensor. Solutions include AdS_2 * S^3 * CY_6 as well as many others constructed from taking the 8-dimensional Kahler manifold to be a product of Kahler-Einstein and Calabi-Yau spaces.
15 pages, latex. Section 5 has been added, containing additional details of the analysis of static solutions; typos corrected and references added
References in corpus (9)
- Near-horizon symmetries of extremal black holes
- Essentials of Blackfold Dynamics
- Comments on AdS2 solutions of D=11 Supergravity
- N=31, D=11
- Heterotic Black Horizons
- Heterotic horizons, Monge-Ampere equation and del Pezzo surfaces
- M-theory backgrounds with 30 Killing spinors are maximally supersymmetric
- IIB black hole horizons with five-form flux and KT geometry
- IIB black hole horizons with five-form flux and extended supersymmetry
Cited by in corpus (8)
- Classification of near-horizon geometries of extremal black holes
- Supersymmetry of AdS and flat backgrounds in M-theory
- Index theory and dynamical symmetry enhancement of M-horizons
- M-Horizons
- AdS4 black holes from M-theory
- IIB horizons
- N=4 Near-Horizon Geometries in D=11 Supergravity
- Spinorial geometry, horizons and superconformal symmetry in six dimensions