Anholonomic Frames and Thermodynamic Geometry of 3D Black Holes
Abstract
We study new classes three dimensional black hole solutions of Einstein equations written in two holonomic and one anholonomic variables with respect to anholonomic frames Thermodynamic properties of such (2+1)-black holes with generic local anisotropy (having elliptitic horizons) are studied by applying geometric methods. The corresponding thermodynamic systems are three dimensional with entropy S being a hypersurface function on mass M, anisotropy angle and eccentricity of elliptic deformations Two-dimensional curved thermodynamic geometries for locally anistropic deformed black holes are constructed after integration on anisotropic parameter . Two approaches, the first one based on two-dimensional hypersurface parametric geometry and the second one developed in a Ruppeiner-Mrugala-Janyszek fashion, are analyzed. The thermodynamic curvatures are computed and the critical points of curvature vanishing are defined.
Cite
@article{arxiv.gr-qc/0106069,
title = {Anholonomic Frames and Thermodynamic Geometry of 3D Black Holes},
author = {Sergiu I. Vacaru and Panayiotis Stavrinos and Denis Gontsa},
journal= {arXiv preprint arXiv:gr-qc/0106069},
year = {2007}
}
Comments
Latex, affiliations changed, new references and minor corrections