Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D, Particles, fields, gravitation, and cosmology · 2006 · 42 citations · 54 references
Black Hole DynamicEngineeringGeneral RelativityBlack HoleBlack Hole PhysicsCosmologyGauss-bonnet-maxwell GravityCounterterm MethodNumerical RelativitySuitable TransformationGeometric Partial Differential EquationThermodynamicsGauss-bonnet GravityGravitation TheoryStability Analysis
By a suitable transformation, we present the $(n+1)$-dimensional charged rotating solutions of Gauss-Bonnet gravity with a complete set of allowed rotation parameters which are real in the whole spacetime. We show that these charged rotating solutions present black hole solutions with two inner and outer event horizons, extreme black holes, or naked singularities provided the parameters of the solutions are chosen suitable. Using the surface terms that make the action well defined for Gauss-Bonnet gravity and the counterterm method for eliminating the divergences in action, we compute finite action of the solutions. We compute the conserved and thermodynamical quantities through the use of free energy and the counterterm method, and find that the two methods give the same results. We also find that these quantities satisfy the first law of thermodynamics. Finally, we perform a stability analysis by computing the heat capacity and the determinant of Hessian matrix of mass with respect to its thermodynamic variables in both the canonical and the grand-canonical ensembles, and show that the system is thermally stable. This is commensurate with the fact that there is no Hawking-Page phase transition for black objects with zero curvature horizon.
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Anti de Sitter space and holography
Edward Witten · Advances in Theoretical and Mathematical Physics · 1998 · 12.4K citations · Full text
S. W. Hawking · Nature · 1974 · 5.4K citations
Black Hole Explosions, Relativistic Astrophysics, Black Hole Dynamic +4
Large N field theories, string theory and gravity
Ofer Aharony, Steven S. Gubser, Juan Maldacena et al. · Physics Reports · 2000 · 5.2K citations · Full text