English

Entanglement Wedge Cross Section with Gauss-Bonnet Corrections and Thermal Quench

High Energy Physics - Theory 2021-11-03 v3

Abstract

The entanglement wedge cross section (EWCS) is numerically investigated statically and dynamically in a five-dimension AdS-Vaidya spacetime with Gauss-Bonnet (GB) corrections, focusing on two identical rectangular strips on the boundary. In the static case, EWCS increases as the GB coupling constant α\alpha increases and disentangles at small separation between two strips for smaller α\alpha. For the dynamic case, such a monotonic relationship between EWCS and α\alpha holds but the two strips no longer disentangle monotonically as in the static case. In the early thermal quenching stage, the disentanglement occurs at smaller α\alpha with larger separations. Two strips then disentangle at larger {separation} with larger α\alpha as time evolves. Our results indicate that the higher-order derivative corrections, like the entanglement measure in the dual boundary theory, also have nontrivial effects on the EWCS evolution.

Keywords

Cite

@article{arxiv.2102.12171,
  title  = {Entanglement Wedge Cross Section with Gauss-Bonnet Corrections and Thermal Quench},
  author = {Yong-Zhuang Li and Cheng-Yong Zhang and Xiao-Mei Kuang},
  journal= {arXiv preprint arXiv:2102.12171},
  year   = {2021}
}

Comments

19 pages;Published version