Thermodynamics of hairy black holes in Lovelock gravity
Abstract
We perform a thorough study of the thermodynamic properties of a class of Lovelock black holes with conformal scalar hair arising from coupling of a real scalar field to the dimensionally extended Euler densities. We study the linearized equations of motion of the theory and describe constraints under which the theory is free from ghosts/tachyons. We then consider, within the context of black hole chemistry, the thermodynamics of the hairy black holes in the Gauss-Bonnet and cubic Lovelock theories. We clarify the connection between isolated critical points and thermodynamic singularities, finding a one parameter family of these critical points which occur for well-defined thermodynamic parameters. We also report on a number of novel results, including `virtual triple points' and the first example of a `-line'---a line of second order phase transitions---in black hole thermodynamics.
Keywords
Cite
@article{arxiv.1612.06852,
title = {Thermodynamics of hairy black holes in Lovelock gravity},
author = {Robie A. Hennigar and Erickson Tjoa and Robert B. Mann},
journal= {arXiv preprint arXiv:1612.06852},
year = {2017}
}
Comments
62 pages, 30 figures. Minor changes and typos corrected. Updated to match published version