Energetics and optical properties of 6-dimensional rotating black hole in pure Gauss–Bonnet gravity

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Abstract

We study physical processes around a rotating black hole in pure Gauss–Bonnet (GB) gravity. In pure GB gravity, the gravitational potential has a slower fall-off as compared to the corresponding Einstein potential in the same dimension. It is therefore expected that the energetics of a pure GB black hole would be weaker, and our analysis bears out that the efficiency of energy extraction by the Penroseprocess is increased to 25.8 % and the particle acceleration is increased to 55.28 %; the optical shadow of the black hole is decreased. These are in principle distinguishing observable features of a pure GB black hole.

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Abdujabbarov, A., Atamurotov, F., Dadhich, N., Ahmedov, B., & Stuchlík, Z. (2015). Energetics and optical properties of 6-dimensional rotating black hole in pure Gauss–Bonnet gravity. European Physical Journal C, 75(8). https://doi.org/10.1140/epjc/s10052-015-3604-5

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