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The large D Membrane Paradigm For Einstein-Gauss-Bonnet Gravity

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arxiv 1806.05201 v3 pith:Y3SHQ4MI submitted 2018-06-13 hep-th gr-qc

classification hep-thgr-qc
keywords equationsmembraneblackgravityorderholesspectrumeinstein-gauss-bonnet
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We find the equations of motion of membranes dual to the black holes in Einstein-Gauss-Bonnet (EGB) gravity to leading order in 1/D in the large D regime. We also find the metric solutions to the EGB equations to first subleading order in 1/D in terms of membrane variables. We propose a world volume stress tensor for the membrane whose conservation equations are equivalent to the leading order membrane equations. We also work out the light quasi-normal mode spectrum of static black holes in EGB gravity from the linearised fluctuations of static, round membranes. Also, the effective equations for stationary black holes and the spectrum of linearised spectrum about black string configurations has been obtained using the membrane equation for EGB gravity.All our results are worked out to linear order in the Gauss-Bonnet parameter.

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  1. The Fate of Instability of de Sitter Black Holes at Large $D$

    hep-th 2019-09 conditional novelty 6.0 of 10

    At large D, RN-dS and GB-dS black holes evolve to stationary lumpy solutions on the instability threshold, and in the unstable region their mass localizes into spot-like or ring-like configurations.

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