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Quantum extremal surfaces: holographic entanglement entropy beyond the classical regime

Journal of High Energy Physics · 2015 · Vol. 2015(1)
Netta EngelhardtAron C. Wall

Abstract

We propose that holographic entanglement entropy can be calculated at arbitrary orders in the bulk Planck constant using the concept of a “quantum extremal surface”: a surface which extremizes the generalized entropy, i.e. the sum of area and bulk entanglement entropy. At leading order in bulk quantum corrections, our proposal agrees with the formula of Faulkner, Lewkowycz, and Maldacena, which was derived only at this order; beyond leading order corrections, the two conjectures diverge. Quantum extremal surfaces lie outside the causal domain of influence of the boundary region as well as its complement, and in some spacetimes there are barriers preventing them from entering certain regions. We comment on the implications for bulk reconstruction.

Black Holes and Theoretical PhysicsCosmology and Gravitation TheoriesNoncommutative and Quantum Gravity TheoriesQuantum entanglementPhysicsHolographyEntropy (arrow of time)Quantum discordQuantumQuantum mechanicsTheoretical physicsPlanckMathematical physics

Funding

  • National Science Foundation
  • Simons Foundation
Citations
835
FWCI
34.56
field-weighted impact
References
98
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100%
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Classical and Quantum Gravity · 2012 · 425 citations
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