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The first law of thermodynamics for Kerr–anti-de Sitter black holes

Classical and Quantum Gravity · 2005 · Vol. 22(9) · pp. 1503–1526
G. W. GibbonsMalcolm J. PerryC.N. Pope

Abstract

We obtain expressions for the mass and angular momenta of rotating black holes in anti-de Sitter backgrounds in four, five and higher dimensions. We verify explicitly that our expressions satisfy the first law of thermodynamics, thus allowing an unambiguous identification of the entropy of these black holes with $\ft14$ of the area. We find that the associated thermodynamic potential equals the background-subtracted Euclidean action multiplied by the temperature. Our expressions differ from many given in the literature. We find that in more than four dimensions, only our expressions satisfy the first law of thermodynamics. Moreover, in all dimensions we show that our expression for the mass coincides with that given by the conformal conserved charge introduced by Ashtekar, Magnon and Das. We indicate the relevance of these results to the AdS/CFT correspondence.

Black Holes and Theoretical PhysicsCosmology and Gravitation TheoriesAstrophysical Phenomena and ObservationsFirst law of thermodynamicsThermodynamicsPhysicsBlack hole thermodynamicsLaws of thermodynamicsNon-equilibrium thermodynamicsTheoretical physicsClassical mechanicsMathematical physicsEntropy (arrow of time)

Funding

  • U.S. Department of Energy
  • CERN
Citations
499
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Communications in Mathematical Physics · 1968 · 1,040 citations
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