Nuclear Physics | 2019

Holographic entanglement first law for $d$ + 1 dimensional rotating cylindrical black holes

 
 
 
 

Abstract


Abstract We calculate the holographic entanglement entropy for the rotating cylindrical black holes in d + 1 dimensions as perturbations over A d S d + 1 . This is accomplished based on the first order variation of the area functional in arbitrary dimensions. For these types of black holes, the angular momentum appears at the first order of the perturbative expansion of the holographic entanglement entropy for spacetime dimensions of d + 1 ≥ 4. We obtain a form of holographic entanglement first law in the presence of both energy and angular momentum.

Volume 949
Pages 114822
DOI 10.1016/j.nuclphysb.2019.114822
Language English
Journal Nuclear Physics

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