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Universal corner contributions to entanglement negativity

High Energy Physics - Theory 2016-08-24 v1

Abstract

It has been realised that corners in entangling surfaces can induce new universal contributions to the entanglement entropy and R\'enyi entropy. In this paper we study universal corner contributions to entanglement negativity in three- and four-dimensional CFTs using both field theory and holographic techniques. We focus on the quantity χ\chi defined by the ratio of the universal part of the entanglement negativity over that of the entanglement entropy, which may characterise the amount of distillable entanglement. We find that for most of the examples χ\chi takes bigger values for singular entangling regions, which may suggest increase in distillable entanglement. However, there also exist counterexamples where distillable entanglement decreases for singular surfaces. We also explore the behaviour of χ\chi as the coupling varies and observe that for singular entangling surfaces, the amount of distillable entanglement is mostly largest for free theories, while counterexample exists for free Dirac fermion in three dimensions. For holographic CFTs described by higher derivative gravity, χ\chi may increase or decrease, depending on the sign of the relevant parameters. Our results may reveal a more profound connection between geometry and distillable entanglement.

Keywords

Cite

@article{arxiv.1604.06891,
  title  = {Universal corner contributions to entanglement negativity},
  author = {Keun-Young Kim and Chao Niu and Da-Wei Pang},
  journal= {arXiv preprint arXiv:1604.06891},
  year   = {2016}
}

Comments

28 pages, 5 figures

R2 v1 2026-06-22T13:39:12.496Z