Viscosity to entropy density ratio for non-extremal Gauss-Bonnet black holes coupled to Born-Infeld electrodynamics
arXiv:1704.03284 · doi:10.1140/epjc/s10052-017-5187-9
Abstract
The ratio of the shear viscosity to the entropy density is calculated for non-extremal Gauss-Bonnet (GB) black holes coupled to Born-Infeld (BI) electrodynamics in dimensions. The result is found to get corrections from the BI parameter and is analytically exact upto all orders in this parameter. The computations are then extended to dimensions.
12 pages Latex, comments are welcome
References in corpus (7)
- Viscosity Bound and Causality Violation
- Effect of curvature squared corrections in AdS on the viscosity of the dual gauge theory
- Shear Viscosity from Effective Couplings of Gravitons
- Shear Viscosity from Gauss-Bonnet Gravity with a Dilaton Coupling
- Viscosity of gauge theory plasma with a chemical potential from AdS/CFT correspondence
- Conserved charges for black holes in Einstein-Gauss-Bonnet gravity coupled to nonlinear electrodynamics in AdS space
- Shear Viscosity from AdS Born-Infeld Black Holes
Cited by in corpus (4)
- Quasinormal modes of Gauss-Bonnet-AdS black holes: towards holographic description of finite coupling
- Static topological black hole with nonminimal derivative coupling and nonlinear electromagnetic field of Born-Infeld type
- Noncommutative effects of charged black hole on holographic superconductors
- Meissner effect in holographic superconductors with Dirac-Born-Infeld electrodynamics