Extended phase space of Black Holes in Lovelock gravity with nonlinear electrodynamics
Abstract
In this paper, we consider Lovelock gravity in presence of two Born-Infeld types of nonlinear electrodynamics and study their thermodynamical behavior. We extend the phase space by considering cosmological constant as a thermodynamical pressure. We obtain critical values of pressure, volume and temperature and investigate the effects of both the Lovelock gravity and the nonlinear electrodynamics on these values. We plot , and diagrams to study the phase transition of these thermodynamical systems. We show that power of the nonlinearity and gravity have opposite effects. We also show how considering cosmological constant, nonlinearity and Lovelock parameters as thermodynamical variables will modify Smarr formula and first law of thermodynamics. In addition, we study the behavior of universal ratio of for different values of nonlinearity power of electrodynamics as well as the Lovelock coefficients.
Keywords
Cite
@article{arxiv.1511.00656,
title = {Extended phase space of Black Holes in Lovelock gravity with nonlinear electrodynamics},
author = {S. H. Hendi and S. Panahiyan and B. Eslam Panah},
journal= {arXiv preprint arXiv:1511.00656},
year = {2017}
}
Comments
14 pages, 12 figures, 6 tables