Article ID Journal Published Year Pages File Type
1856113 Annals of Physics 2014 9 Pages PDF
Abstract

•We examine the thermodynamical properties of black holes in Einstein gravity with nonlinear electrodynamics.•We investigate thermodynamic stability and discuss about the size of stable black holes.•We obtain analytical solutions of higher dimensional theory.

Motivated by possible relation between Born–Infeld type nonlinear electrodynamics and an effective low-energy action of open string theory, asymptotically Reissner–Nordström black holes whose electric field is described by a nonlinear electrodynamics (NLED) are studied. We take into account a four dimensional topological static black hole ansatz and solve the field equations, exactly, in terms of the NLED as a matter field. The main goal of this paper is investigation of thermodynamic properties of the obtained black holes. Moreover, we calculate the heat capacity and find that the nonlinearity affects the minimum size of stable black holes. We also use Legendre-invariant metric proposed by Quevedo to obtain scalar curvature divergences. We find that the singularities of the Ricci scalar in Geometrothermodynamics (GTD) method take place at the Davies points.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Physics and Astronomy (General)
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