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Topological black holes in anti-de Sitter space
Classical and Quantum Gravity · 1999 · Vol. 16(4) · pp. 1197–1205
Danny Birmingham✉(University College Dublin)
Abstract
We consider a class of black hole solutions to Einstein's equations in d dimensions with a negative cosmological constant. These solutions have the property that the horizon is a (d-2)-dimensional Einstein manifold of positive, zero, or negative curvature. The mass, temperature, and entropy are calculated. Using the correspondence with conformal field theory, the phase structure of the solutions is examined, and used to determine the correct mass dependence of the Bekenstein-Hawking entropy.
Black Holes and Theoretical PhysicsCosmology and Gravitation TheoriesNoncommutative and Quantum Gravity Theoriesde Sitter–Schwarzschild metricConformal mapBlack hole (networking)HorizonEntropy (arrow of time)Event horizonBlack hole thermodynamicsEinstein field equationsEinsteinManifold (fluid mechanics)
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412
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References
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Physics Letters B · 1998 · 8,667 citations
Thermodynamics of black holes in anti-de Sitter space
Communications in Mathematical Physics · 1983 · 2,881 citations
Action integrals and partition functions in quantum gravity
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1977 · 3,251 citations
Hamilton-Jacobi and Schrodinger Separable Solutions of Einstein’s Equations
Communications in Mathematical Physics · 1968 · 1,040 citations
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