Geometry of higher-dimensional black hole thermodynamics

Jan E. Åman and Narit Pidokrajt
Phys. Rev. D 73, 024017 – Published 19 January 2006

Abstract

We investigate thermodynamic curvatures of the Kerr and Reissner-Nordström (RN) black holes in spacetime dimensions higher than four. These black holes possess thermodynamic geometries similar to those in four-dimensional spacetime. The thermodynamic geometries are the Ruppeiner geometry and the conformally related Weinhold geometry. The Ruppeiner geometry for a d=5 Kerr black hole is curved and divergent in the extremal limit. For a d6 Kerr black hole there is no extremality but the Ruppeiner curvature diverges where one suspects that the black hole becomes unstable. The Weinhold geometry of the Kerr black hole in arbitrary dimension is a flat geometry. For the RN black hole the Ruppeiner geometry is flat in all spacetime dimensions, whereas its Weinhold geometry is curved. In d5 the Kerr black hole can possess more than one angular momentum. Finally we discuss the Ruppeiner geometry for the Kerr black hole in d=5 with double angular momenta.

  • Figure
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  • Received 4 November 2005

DOI:https://doi.org/10.1103/PhysRevD.73.024017

©2006 American Physical Society

Authors & Affiliations

Jan E. Åman* and Narit Pidokrajt

  • Quantum and Field Theory group, Department of Physics, AlbaNova, Stockholm University,‡ SE-106 91 Stockholm, Sweden

  • *Electronic address: ja@physto.se
  • Electronic address: narit@physto.se
  • Electronic address: www.kof.physto.se

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Issue

Vol. 73, Iss. 2 — 15 January 2006

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