Aspects of higher-curvature gravities with covariant derivatives
Sergio E. Aguilar-Gutierrez, Pablo Bueno, Pablo A. Cano, Robie A., Hennigar, Quim Llorens

TL;DR
This paper explores higher-curvature gravity theories with covariant derivatives, characterizing their spectra, presenting new GQT gravities, analyzing black hole solutions, and examining brane-world implications with complex mode structures.
Contribution
It introduces the first examples of GQT gravities involving covariant derivatives, analyzes their properties, and derives explicit forms for brane-world effective actions with high-order terms.
Findings
Modified Newton potential in general higher-curvature theories
New black hole solutions with distinct thermodynamic behavior
Infinite towers of ghost modes and exotic perturbations in brane-world models
Abstract
We study various aspects of higher-curvature theories of gravity built from contractions of the metric, the Riemann tensor and the covariant derivative, . We characterise the linearized spectrum of these theories and compute the modified Newton potential in the general case. Then, we present the first examples of Generalized Quasi-topological (GQT) gravities involving covariant derivatives of the Riemann tensor. We argue that they always have second-order equations on maximally symmetric backgrounds. Focusing on four spacetime dimensions, we find new densities of that type involving eight and ten derivatives of the metric. In the latter case, we find new modifications of the Schwarzschild black hole. These display thermodynamic properties which depart from the ones of polynomial GQT black holes. In particular, the relation between the temperature…
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Cosmology and Gravitation Theories · Astrophysical Phenomena and Observations
