$f(R)$ Gravity Effects on Charged Accelerating AdS Black Holes using Holographic Tools
Abstract
We investigate numerically gravity effects on certain AdS/CFT tools including holographic entanglement entropy and two-point correlation functions for a charged single accelerated Anti-de Sitter black hole in four dimensions. We find that both holographic entanglement entropy and two-point correlation functions decrease by increasing acceleration parameter , matching perfectly with literature. Taking into account the gravity parameter , the decreasing scheme of the holographic quantities persist. However, we observe a transition-like point where the behavior of the holographic tools change. Two regions meeting at such a transit-like point are shown up. In such a nomination, the first one is associated with slow accelerating black holes while the second one corresponds to a fast accelerating solution. In the first region, the holographic entanglement entropy and two-point correlation functions decrease by increasing the parameter. However, the behavioral situation is reversed in the second one. Moreover, a cross-comparison between the entropy and the holographic entanglement entropy is presented providing another counter-example showing that such two quantities do not exhibit similar behaviors.
Cite
@article{arxiv.2008.00931,
title = {$f(R)$ Gravity Effects on Charged Accelerating AdS Black Holes using Holographic Tools},
author = {A. Belhaj and H. El Moumni and K. Masmar},
journal= {arXiv preprint arXiv:2008.00931},
year = {2020}
}
Comments
16 pages, 3 figures, Accepted in AHEP