Home
Scholarly Works
Black holes in ultraviolet-complete Hořava gravity
Journal article

Black holes in ultraviolet-complete Hořava gravity

Abstract

Hořava gravity is a proposal for completing general relativity in the ultraviolet by interactions that violate Lorentz invariance at very high energies. We focus on (2+1)-dimensional projectable Hořava gravity, a theory which is renormalizable and perturbatively ultraviolet-complete, enjoying an asymptotically free ultraviolet fixed point. Adding a small cosmological constant to regulate the long-distance behavior of the metric, we search for all circularly symmetric stationary vacuum solutions with vanishing angular momentum and approaching the de Sitter metric with a possible angle deficit at infinity. We find a two-parameter family of such geometries. Apart from the cosmological de Sitter horizon, these solutions generally contain another Killing horizon and should therefore be interpreted as black holes from the viewpoint of the low-energy theory. Contrary to naive expectations, their central singularity is not resolved by the higher derivative terms present in the action. It is unknown at present if these solutions form as a result of gravitational collapse. The only solution regular everywhere is just the de Sitter metric devoid of any black hole horizon.

Authors

Lara G; Herrero-Valea M; Barausse E; Sibiryakov SM

Journal

Physical Review D, Vol. 103, No. 10,

Publisher

American Physical Society (APS)

Publication Date

May 15, 2021

DOI

10.1103/physrevd.103.104007

ISSN

2470-0010

Contact the Experts team