Quantum error correction and holographic information from bilocal holography
A bstract Bilocal holography is a constructive approach to the higher spin theory holographically dual to O ( N ) vector models. In contrast to other approaches to bulk reconstruction, bilocal holography does not take input from the dual gravitational theory. The resulting map is a complete bulk/bou...
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Veröffentlicht in: | The journal of high energy physics 2021-11, Vol.2021 (11), p.1-30, Article 192 |
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Hauptverfasser: | , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A
bstract
Bilocal holography is a constructive approach to the higher spin theory holographically dual to
O
(
N
) vector models. In contrast to other approaches to bulk reconstruction, bilocal holography does not take input from the dual gravitational theory. The resulting map is a complete bulk/boundary mapping in that it maps the complete set of
O
(
N
) invariant degrees of freedom in the CFT, to the complete set of higher spin degrees of freedom. After restricting to a suitable code subspace we demonstrate that bilocal holography naturally reproduces the quantum error correcting properties of holography and it gives a robust bulk (entanglement wedge) reconstruction. A gauge invariant entangled pair of CFT degrees of freedom are naturally smeared over a semicircle in the bulk spacetime, which is highly suggestive of bit threads. Finally, we argue that finite
N
relations in the CFT, when interpreted in the dual AdS spacetime, can provide relations between degrees of freedom located near the boundary and degrees of freedom deep in the bulk. |
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ISSN: | 1029-8479 1029-8479 |
DOI: | 10.1007/JHEP11(2021)192 |