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Causal Holographic Information

Hubeny, Veronika E.; Rangamani, Mukund

Authors

Veronika E. Hubeny

Mukund Rangamani



Abstract

We propose a measure of holographic information based on a causal wedge construction. The motivation behind this comes from an attempt to understand how boundary field theories can holographically reconstruct spacetime. We argue that given the knowledge of the reduced density matrix in a spatial region of the boundary, one should be able to reconstruct at least the corresponding bulk causal wedge. In attempt to quantify the ‘amount of information’ contained in a given spatial region in field theory, we consider a particular bulk surface (specifically a co-dimension two surface in the bulk spacetime which is an extremal surface on the boundary of the bulk causal wedge), and propose that the area of this surface, measured in Planck units, naturally quantifies the information content. We therefore call this area the causal holographic information. We also contrast our ideas with earlier studies of holographic entanglement entropy. In particular, we establish that the causal holographic information, whilst not being a von Neumann entropy, curiously enough agrees with the entanglement entropy in all cases where one has a microscopic understanding of entanglement entropy.

Citation

Hubeny, V. E., & Rangamani, M. (2012). Causal Holographic Information. Journal of High Energy Physics, 2012(6), Article 114. https://doi.org/10.1007/jhep06%282012%29114

Journal Article Type Article
Publication Date Jun 20, 2012
Deposit Date Aug 31, 2012
Publicly Available Date May 7, 2014
Journal Journal of High Energy Physics
Print ISSN 1126-6708
Publisher Scuola Internazionale Superiore di Studi Avanzati (SISSA)
Peer Reviewed Peer Reviewed
Volume 2012
Issue 6
Article Number 114
DOI https://doi.org/10.1007/jhep06%282012%29114
Keywords Gauge-gravity correspondence, AdS-CFT Correspondence.

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