English

On Information Loss in AdS$_3$/CFT$_2$

High Energy Physics - Theory 2016-06-03 v3

Abstract

We discuss information loss from black hole physics in AdS3_3, focusing on two sharp signatures infecting CFT2_2 correlators at large central charge cc: 'forbidden singularities' arising from Euclidean-time periodicity due to the effective Hawking temperature, and late-time exponential decay in the Lorentzian region. We study an infinite class of examples where forbidden singularities can be resolved by non-perturbative effects at finite cc, and we show that the resolution has certain universal features that also apply in the general case. Analytically continuing to the Lorentzian regime, we find that the non-perturbative effects that resolve forbidden singularities qualitatively change the behavior of correlators at times tSBHt \sim S_{BH}, the black hole entropy. This may resolve the exponential decay of correlators at late times in black hole backgrounds. By Borel resumming the 1/c1/c expansion of exact examples, we explicitly identify 'information-restoring' effects from heavy states that should correspond to classical solutions in AdS3_3. Our results suggest a line of inquiry towards a more precise formulation of the gravitational path integral in AdS3_3.

Keywords

Cite

@article{arxiv.1603.08925,
  title  = {On Information Loss in AdS$_3$/CFT$_2$},
  author = {A. Liam Fitzpatrick and Jared Kaplan and Daliang Li and Junpu Wang},
  journal= {arXiv preprint arXiv:1603.08925},
  year   = {2016}
}

Comments

41+18 pages, 13 figures; v2 typos & refs; v3 intro expanded

R2 v1 2026-06-22T13:20:53.549Z