Page Curve and Island in EGB gravity
arXiv:2205.13785 · doi:10.1016/j.nuclphysb.2023.116284
Abstract
In this paper, the information paradox on lower-dimensional Gauss-Bonnet gravity known as a three-dimensional EGB black hole is studied using the quantum extremal island approach. For that, we connect an auxiliary flat bath system to this timelike singularity spacetime and estimate the entropy of hawking radiation in its asymptotic regions when gravity is weak. The addition of island areas to the entanglement wedge of radiation causes its entropy to obey the Page curve, as shown. The quantum extremal surface, or island boundary, is located outside the horizon. This yields a time-independent equation for Hawking radiation fine-grained entropy that is compatible with the appropriate Page curve. We also discover the modifications to this entropy and Page time.
References in corpus (4)
Cited by in corpus (6)
- Island of Reissner-Nordstrm anti-de Sitter black holes in the large limit
- Infrared Regularization and Finite Size Dynamics of Entanglement Entropy in Schwarzschild Black Hole
- Effect of backreaction on Island, Page curve and Mutual Information
- Island rules for the noncommutative black hole
- Investigating the role of mutual information in the Page curve for a functional renormalization group improved Schwarzschild black hole
- New insights on mutual information in the island approach to the Page curve