Black holes in quasi-topological gravity and conformal couplings
Mariano Chernicoff, Octavio Fierro, Gaston Giribet, Julio Oliva

TL;DR
This paper explores black hole solutions in five-dimensional quasi-topological gravity with matter and gauge fields, revealing new explicit solutions with interesting thermodynamic behavior within a consistent parameter space.
Contribution
It provides the first explicit charged AdS_5 black hole solutions in quasi-topological gravity with conformal matter coupling, extending previous models.
Findings
Explicit charged black hole solutions in AdS_5 with matter backreaction
Solutions exist within causality and consistency constraints
Black holes exhibit non-trivial thermodynamics
Abstract
Lovelock theory of gravity provides a tractable model to investigate the effects of higher-curvature terms in the context of AdS/CFT. Yielding second order, ghost-free field equations, this theory represents a minimal setup in which higher-order gravitational couplings in asymptotically Anti-de Sitter (AdS) spaces, including black holes, can be solved analytically. This however has an obvious limitation as in dimensions lower than seven, the contribution from cubic or higher curvature terms is merely topological. Therefore, in order to go beyond quadratic order and study higher terms in AdS_5 analytically, one is compelled to look for other toy models. One such model is the so-called quasi-topological gravity, which, despite being a higher-derivative theory, provides a tractable setup with R^3 and R^4 terms. In this paper, we investigate AdS_5 black holes in quasi-topological gravity.…
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