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Reflected Entropy for Communicating Black Holes II: Planck Braneworlds

High Energy Physics - Theory 2023-02-27 v1

Abstract

We obtain the reflected entropy for bipartite mixed state configurations of two adjacent and disjoint subsystems at a finite temperature in finite-sized non-gravitating reservoirs described by CFT2CFT_2s each coupled to two quantum dots at their boundaries in the large central charge limit through a replica technique. These field theory results are substantiated through a holographic computation involving the entanglement wedge cross section in the dual bulk BTZ black hole geometry truncated by two Planck branes. The two Planck branes are the holographic duals of the quantum dots described by AdS2AdS_2 slices with JT black holes. Our results reproduce the holographic duality between the reflected entropy and the bulk entanglement wedge cross section in the context of the AdS3/CFT2AdS_3/CFT_2 correspondence. Subsequently we analyze the behaviour of the holographic Markov gap between the reflected entropy and the mutual information for different scenarios involving the subsystem sizes and time.

Keywords

Cite

@article{arxiv.2302.12810,
  title  = {Reflected Entropy for Communicating Black Holes II: Planck Braneworlds},
  author = {Mir Afrasiar and Jaydeep Kumar Basak and Ashish Chandra and Gautam Sengupta},
  journal= {arXiv preprint arXiv:2302.12810},
  year   = {2023}
}

Comments

41 pages, 15 figures