One-loop quantum corrections to the thermodynamics of charged black holes.

نویسندگان

  • Frolov
  • Israel
  • Solodukhin
چکیده

Quantum corrections are studied for a charged black hole in a two-dimensional model obtained by spherisymmetric reduction of the 4D Einstein-Maxwell theory. The classical (tree-level) thermodynamics is re-formulated in the framework of the off-shell approach, considering systems at arbitrary temperature. This implies a conical singularity at the horizon and modifies the gravitational action by terms defined on the horizon. A consistent variational procedure for the action functional is formulated. It is shown that the free energy reaches an extremum on the regular manifold with T = TH . The one-loop contribution to the action in the LiouvillePolyakov form is re-examined. All the boundary terms are taken into account and the dependence on the state of the quantum field is established. The modification of the Liouville-Polyakov term for a 2D space with a conical defect is derived. The backreaction of the Hawking radiation on the geometry is studied and the quantum-corrected black hole metric is calculated perturbatively. Within the offshell approach the one-loop thermodynamical quantities, energy and entropy, are found. They are shown to contain a part due to hot gas surrounding the black hole and a part due to the hole itself. It is noted that the contribution of the hot gas can be eliminated by appropriate choice of the (generally, non-flat) reference geometry. The deviation of the “ entropy horizon area” relation for the quantum-corrected black hole from the classical law is discovered and possible physical consequences are discussed. PACS number(s): 04.60.+n, 12.25.+e, 97.60.Lf, 11.10.Gh

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عنوان ژورنال:
  • Physical review. D, Particles and fields

دوره 54 4  شماره 

صفحات  -

تاریخ انتشار 1996