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Published on: November 15, 2013
Stability of anti-de sitter space in Einstein-Gauss-Bonnet gravity
Nils Deppe1, Allison Kolly1, Andrew Frey1
1Physics Department, University of Winnipeg, Winnipeg, Manitoba, R3B 2E9 Canada.
Abstract:
Recently it has been argued that in Einstein gravity anti-de Sitter spacetime is unstable against the formation of black holes for a large class of arbitrarily small perturbations. We examine the effects of including a Gauss-Bonnet term. In five dimensions, spherically symmetric Einstein-Gauss-Bonnet gravity has two key features: Choptuik scaling exhibits a radius gap, and the mass function goes to a finite value as the horizon radius vanishes. These suggest that black holes will not form dynamically if the total mass-energy content of the spacetime is too small, thereby restoring the stability of anti-de Sitter spacetime in this context. We support this claim with numerical simulations and uncover a rich structure in horizon radii and formation times as a function of perturbation amplitude.
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