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Hayden--Preskill Model via Local Quenches

High Energy Physics - Theory 2025-10-08 v1 Strongly Correlated Electrons Quantum Physics

Abstract

We model the Hayden--Preskill (HP) information recovery protocol in 2d CFTs via local joining quenches. Euclidean path integrals with slits prepare the HP subsystems: the message MM, its reference NN, the Page-time black hole BB, the early radiation EE, and the late radiation RR; the remaining black hole after emitting RR is denoted as BB'. The single-slit geometry provides an analytically tractable toy model, while the bounded-slit geometry more closely captures the HP setup. In the free Dirac fermion 2d CFT, the mutual information I(N ⁣: ⁣B)I(N\!:\!B') shows quasi-particle dynamics with partial or full revivals, whereas that in holographic 2d CFTs, which are expected to be maximally chaotic, exhibit sharp transitions: in the bounded-slit case, when the size of the late radiation becomes comparable to that of the reference NN, I(N ⁣: ⁣B)I(N\!:\!B') does vanish at late time, otherwise it remains finite. This contrast between free CFTs and holographic CFTs gives a clear characterization of the HP recovery threshold.

Cite

@article{arxiv.2510.05853,
  title  = {Hayden--Preskill Model via Local Quenches},
  author = {Weibo Mao and Tadashi Takayanagi},
  journal= {arXiv preprint arXiv:2510.05853},
  year   = {2025}
}

Comments

38 pages+appendices, 15 figures

R2 v1 2026-07-01T06:21:16.391Z