4.4 Article

Holographic entanglement negativity and replica symmetry breaking

期刊

JOURNAL OF HIGH ENERGY PHYSICS
卷 -, 期 6, 页码 -

出版社

SPRINGER
DOI: 10.1007/JHEP06(2021)024

关键词

AdS-CFT Correspondence; Gauge-gravity correspondence; Random Systems

资金

  1. National Science Foundation [PHY-1748958, PHY-1820908, 1720504]
  2. University of California
  3. Simons Foundation
  4. NWO through Veni grant [680-47-459]

向作者/读者索取更多资源

This paper examines the deep connections between quantum entanglement and spacetime geometry, focusing on the Renyi negativities and their applications in holographic duality. By studying these quantities in the random tensor network model, the authors rigorously derive their large bond dimension asymptotics, as well as conclusions on entanglement negativity in holographic theories with a gravity dual.
Since the work of Ryu and Takayanagi, deep connections between quantum entanglement and spacetime geometry have been revealed. The negative eigenvalues of the partial transpose of a bipartite density operator is a useful diagnostic of entanglement. In this paper, we discuss the properties of the associated entanglement negativity and its Renyi generalizations in holographic duality. We first review the definition of the Renyi negativities, which contain the familiar logarithmic negativity as a special case. We then study these quantities in the random tensor network model and rigorously derive their large bond dimension asymptotics. Finally, we study entanglement negativity in holographic theories with a gravity dual, where we find that Renyi negativities are often dominated by bulk solutions that break the replica symmetry. From these replica symmetry breaking solutions, we derive general expressions for Renyi negativities and their special limits including the logarithmic negativity. In fixed-area states, these general expressions simplify dramatically and agree precisely with our results in the random tensor network model. This provides a concrete setting for further studying the implications of replica symmetry breaking in holography.

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