AdS/BCFT and Island for curvature-squared gravity
Qi-Lin Hu, Dongqi Li, Rong-Xin Miao, Yu-Qian Zeng

TL;DR
This paper explores AdS/BCFT in curvature-squared gravity, deriving stress tensor properties, proving the holographic g-theorem, and analyzing the Page curve with phase transitions, thus advancing understanding of holography in higher curvature theories.
Contribution
It provides the first detailed analysis of AdS/BCFT with curvature-squared gravity, including stress tensor calculations, boundary conditions, and the holographic g-theorem, with new insights into the Page curve and phase transitions.
Findings
Positive central charge for causality-compliant couplings
Holographic g-theorem holds with null energy condition
Page curve exhibits zeroth-order phase transitions
Abstract
In this paper, we investigate AdS/BCFT for curvature-squared gravity. To warm up, we start with Gauss-Bonnet gravity. We derive the one point function of stress tensor and show that the central charge related to the norm of displacement operator is positive for the couplings obeying causality constraints. Furthermore, by imposing the null energy condition on the end-of-the-world brane, we prove the holographic g-theorem for Gauss-Bonnet gravity. This corrects a wrong point of view in the literature, which claims that the holographic g-theorem is violated for Gauss-Bonnet gravity. As a by-product, we obtain the boundary entropy and A-type boundary central charges in general dimensions. We also study AdS/BCFT for general curvature-squared gravity. We find that it is too restrictive for the shape of the brane and the dual BCFT is trivial if one imposes Neumann boundary conditions for all…
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Cosmology and Gravitation Theories · Nonlinear Waves and Solitons
