English

Critical Collapse in Einstein-Gauss-Bonnet Gravity in Five and Six Dimensions

General Relativity and Quantum Cosmology 2015-03-20 v3 High Energy Physics - Theory

Abstract

Einstein-Gauss-Bonnet gravity (EGB) provides a natural higher dimensional and higher order curvature generalization of Einstein gravity. It contains a new, presumably microscopic, length scale that should affect short distance properties of the dynamics, such as Choptuik scaling. We present the results of a numerical analysis in generalized flat slice co-ordinates of self-gravitating massless scalar spherical collapse in five and six dimensional EGB gravity near the threshold of black hole formation. Remarkably, the behaviour is universal (i.e. independent of initial data) but qualitatively different in five and six dimensions. In five dimensions there is a minimum horizon radius, suggestive of a first order transition between black hole and dispersive initial data. In six dimensions no radius gap is evident. Instead, below the GB scale there is a change in the critical exponent and echoing period.

Keywords

Cite

@article{arxiv.1208.5250,
  title  = {Critical Collapse in Einstein-Gauss-Bonnet Gravity in Five and Six Dimensions},
  author = {N. Deppe and C. D. Leonard and T. Taves and G. Kunstatter and R. B. Mann},
  journal= {arXiv preprint arXiv:1208.5250},
  year   = {2015}
}

Comments

21 pages, 39 figures, a couple of references and two new figures added

R2 v1 2026-06-21T21:55:28.539Z