Inhomogeneous Dust Collapse in 5D Einstein-Gauss-Bonnet Gravity
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We consider a Lemaitre - Tolman - Bondi type space-time in Einstein gravity with the Gauss-Bonnet combination of quadratic curvature terms, and present exact solution in closed form. It turns out that the presence of the coupling constant of the Gauss-Bonnet terms alpha > 0 completely changes the causal structure of the singularities from the analogous general relativistic case. The gravitational collapse of inhomogeneous dust in the five-dimensional Gauss-Bonnet extended Einstein equations leads to formation of a massive, but weak, timelike singularity which is forbidden in general relativity. Interestingly, this is a counterexample to three conjecture viz. cosmic censorship conjecture, hoop conjecture and Seifert's conjecture.
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Cited by 1 Pith paper
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Higher Lovelock Curvature Terms Favor Local Nakedness in Dust Collapse
Higher Lovelock orders promote local visibility of central shell-focusing singularities in dust collapse by controlling the apparent horizon formation relative to the singularity curve.
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