On generalized gravitational entropy, squashed cones and holography
Abstract
We consider generalized gravitational entropy in various higher derivative theories of gravity dual to four dimensional CFTs using the recently proposed regularization of squashed cones. We derive the universal terms in the entanglement entropy for spherical and cylindrical surfaces. This is achieved by constructing the Fefferman-Graham expansion for the leading order metrics for the bulk geometry and evaluating the generalized gravitational entropy. We further show that the Wald entropy evaluated in the bulk geometry constructed for the regularized squashed cones leads to the correct universal parts of the entanglement entropy for both spherical and cylindrical entangling surfaces. We comment on the relation with the Iyer-Wald formula for dynamical horizons relating entropy to a Noether charge. Finally we show how to derive the entangling surface equation in Gauss-Bonnet holography.
Cite
@article{arxiv.1308.5748,
title = {On generalized gravitational entropy, squashed cones and holography},
author = {Arpan Bhattacharyya and Menika Sharma and Aninda Sinha},
journal= {arXiv preprint arXiv:1308.5748},
year = {2015}
}
Comments
28 pages. v2: typos and referencing corrected. v3: typos corrected, clarifications added; version to appear in JHEP