Repository logo

Quantum corrections to finite radius holography and holographic entanglement entropy

Loading...
Thumbnail Image

Advisor

Coadvisor

Graduate program

Undergraduate course

Journal Title

Journal ISSN

Volume Title

Publisher

Type

Article

Access right

Abstract

We calculate quantum corrections to holographic entanglement entropy in the proposed duality between TT¯ -deformed holographic 2D CFTs and gravity in AdS3 with a finite cutoff. We first establish the dictionary between the two theories by mapping the flow equation of the deformed CFT to the bulk Wheeler-DeWitt equation. The latter reduces to an ordinary differential equation for the sphere partition function, which we solve to find the entanglement entropy for an entangling surface consisting of two antipodal points on a sphere. The entanglement entropy in the inverse central charge expansion yields the expectation value of the bulk length operator plus the entropy of length fluctuations, in accordance with the Ryu-Takayanagi formula and its generalization due to Faulkner, Lewkowycz, and Maldacena. Special attention is paid to the conformal mode problem and its resolution by a choice of contour for the gravitational path integral.

Description

Keywords

AdS-CFT Correspondence, Conformal Field Theory

Language

English

Citation

Journal of High Energy Physics, v. 2020, n. 5, 2020.

Related itens

Sponsors

Units

Departments

Undergraduate courses

Graduate programs

Other forms of access