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Non-extremal Island in de Sitter Gravity

Authors :
Hao, Peng-Xiang
Kawamoto, Taishi
Ruan, Shan-Ming
Takayanagi, Tadashi
Hao, Peng-Xiang
Kawamoto, Taishi
Ruan, Shan-Ming
Takayanagi, Tadashi
Publication Year :
2024

Abstract

This paper investigates the challenges and resolutions in computing the entanglement entropy for the quantum field theory coupled to de Sitter (dS) gravity along a timelike boundary. The conventional island formula, originally designed to calculate the fine-grained entropy for a non-gravitational system coupled to anti-de Sitter (AdS) gravity, encounters difficulties in de Sitter gravitational spacetime, failing to provide a physically plausible extremal island. To overcome these problems, we introduce a doubly holographic model by embedding a dS$_2$ braneworld in an AdS$_3$ bulk spacetime. This approach facilitates the computation of entanglement entropy through holographic correlation functions, effectively circumventing the constraints of the island formula. We demonstrate that the correct recipe for calculating entanglement entropy with dS gravity involves the non-extremal island, whose boundary is instead defined at the edge of the dS gravitational region. Our findings indicate that, during the island phase, the entanglement wedge of the non-gravitational bath includes the entire dS gravitational space. Using the second variation formula, we further show that the existence of a locally minimal surface anchored on the gravitational brane is intrinsically linked to the extrinsic curvature of the brane.<br />Comment: 64 pages, 20 figures; v2:added an important reference

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1455252039
Document Type :
Electronic Resource