Bit threads and holographic entanglement of purification

Abstract The entanglement of purification (EoP), which measures the classical correlations and entanglement of a given mixed state, has been conjectured to be dual to the area of the minimal cross section of the entanglement wedge in holography. Using the surface-state correspondence, we propose a “...

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Main Authors: Dong-Hui Du, Chong-Bin Chen, Fu-Wen Shu
Format: Article
Language:English
Published: SpringerOpen 2019-08-01
Series:Journal of High Energy Physics
Subjects:
Online Access:http://link.springer.com/article/10.1007/JHEP08(2019)140
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spelling doaj-b38e558f6ab544a6b26ea49778d82b7c2020-11-25T02:47:10ZengSpringerOpenJournal of High Energy Physics1029-84792019-08-012019812110.1007/JHEP08(2019)140Bit threads and holographic entanglement of purificationDong-Hui Du0Chong-Bin Chen1Fu-Wen Shu2Department of Physics, Nanchang UniversityDepartment of Physics, Nanchang UniversityDepartment of Physics, Nanchang UniversityAbstract The entanglement of purification (EoP), which measures the classical correlations and entanglement of a given mixed state, has been conjectured to be dual to the area of the minimal cross section of the entanglement wedge in holography. Using the surface-state correspondence, we propose a “bit thread” formulation of the EoP. With this formulation, proofs of some known properties of the EoP are performed. Moreover, we show that the quantum advantage of dense code (QAoDC), which reflects the increase in the rate of classical information transmission through quantum channel due to entanglement, also admits a flow interpretation. In this picture, we can prove the monogamy relation of QAoDC with the EoP for tripartite states. We also derive a new lower bound for S(AB) in terms of QAoDC, which is tighter than the one given by the Araki-Lieb inequality.http://link.springer.com/article/10.1007/JHEP08(2019)1402D GravityAdS-CFT CorrespondenceGauge-gravity correspondenceHolography and condensed matter physics (AdS/CMT)
collection DOAJ
language English
format Article
sources DOAJ
author Dong-Hui Du
Chong-Bin Chen
Fu-Wen Shu
spellingShingle Dong-Hui Du
Chong-Bin Chen
Fu-Wen Shu
Bit threads and holographic entanglement of purification
Journal of High Energy Physics
2D Gravity
AdS-CFT Correspondence
Gauge-gravity correspondence
Holography and condensed matter physics (AdS/CMT)
author_facet Dong-Hui Du
Chong-Bin Chen
Fu-Wen Shu
author_sort Dong-Hui Du
title Bit threads and holographic entanglement of purification
title_short Bit threads and holographic entanglement of purification
title_full Bit threads and holographic entanglement of purification
title_fullStr Bit threads and holographic entanglement of purification
title_full_unstemmed Bit threads and holographic entanglement of purification
title_sort bit threads and holographic entanglement of purification
publisher SpringerOpen
series Journal of High Energy Physics
issn 1029-8479
publishDate 2019-08-01
description Abstract The entanglement of purification (EoP), which measures the classical correlations and entanglement of a given mixed state, has been conjectured to be dual to the area of the minimal cross section of the entanglement wedge in holography. Using the surface-state correspondence, we propose a “bit thread” formulation of the EoP. With this formulation, proofs of some known properties of the EoP are performed. Moreover, we show that the quantum advantage of dense code (QAoDC), which reflects the increase in the rate of classical information transmission through quantum channel due to entanglement, also admits a flow interpretation. In this picture, we can prove the monogamy relation of QAoDC with the EoP for tripartite states. We also derive a new lower bound for S(AB) in terms of QAoDC, which is tighter than the one given by the Araki-Lieb inequality.
topic 2D Gravity
AdS-CFT Correspondence
Gauge-gravity correspondence
Holography and condensed matter physics (AdS/CMT)
url http://link.springer.com/article/10.1007/JHEP08(2019)140
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AT chongbinchen bitthreadsandholographicentanglementofpurification
AT fuwenshu bitthreadsandholographicentanglementofpurification
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