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Accelerating black holes in 2 + 1 dimensions: holography revisited

Arenas-Henriquez, Gabriel; Cisterna, Adolfo; Diaz, Felipe; Gregory, Ruth

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Authors

Adolfo Cisterna

Felipe Diaz

Ruth Gregory



Abstract

This paper studies the holographic description of 2 + 1-dimensional accelerating black holes. We start by using an ADM decomposition of the coordinates suitable to identify boundary data. As a consequence, the holographic CFT lies in a fixed curved background which is described by the holographic stress tensor of a perfect fluid. We compute the Euclidean action ensuring that the variational principle is satisfied in the presence of the domain wall. This requires including the Gibbons-Hawking-York term associated with internal boundaries on top of the standard renormalised AdS3 action. Finally, we compute the entanglement entropy by firstly mapping the solution to the Rindler-AdS spacetime in which the Ryu-Takayanagi surface is easily identifiable. We found that as the acceleration increases the accessible region of the conformal boundary decreases and also the entanglement entropy, indicating a loss of information in the dual theory due to acceleration.

Citation

Arenas-Henriquez, G., Cisterna, A., Diaz, F., & Gregory, R. (2023). Accelerating black holes in 2 + 1 dimensions: holography revisited. Journal of High Energy Physics, 2023(9), Article 122. https://doi.org/10.1007/jhep09%282023%29122

Journal Article Type Article
Acceptance Date Sep 9, 2023
Online Publication Date Sep 19, 2023
Publication Date Sep 19, 2023
Deposit Date Jan 8, 2024
Publicly Available Date Jan 8, 2024
Journal Journal of High Energy Physics
Print ISSN 1126-6708
Publisher Scuola Internazionale Superiore di Studi Avanzati (SISSA)
Peer Reviewed Peer Reviewed
Volume 2023
Issue 9
Article Number 122
DOI https://doi.org/10.1007/jhep09%282023%29122
Keywords Black Holes, AdS-CFT Correspondence, Gauge-Gravity Correspondence
Public URL https://durham-repository.worktribe.com/output/2070903

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