English

Fine-Grained Chaos in $AdS_2$ Gravity

High Energy Physics - Theory 2018-03-28 v2 Statistical Mechanics General Relativity and Quantum Cosmology Chaotic Dynamics Quantum Physics

Abstract

Quantum chaos can be characterized by an exponential growth of the thermal out-of-time-order four-point function up to a scrambling time u^\widehat{u}_*. We discuss generalizations of this statement for certain higher-point correlation functions. For concreteness, we study the Schwarzian theory of a one-dimensional time reparametrization mode, which describes AdS2AdS_2 gravity and the low-energy dynamics of the SYK model. We identify a particular set of 2k2k-point functions, characterized as being both "maximally braided" and "k-OTO", which exhibit exponential growth until progressively longer timescales u^(k)=(k1)u^\widehat{u}^{(k)}_* = (k-1)\widehat{u}_*. We suggest an interpretation as scrambling of increasingly fine-grained measures of quantum information, which correspondingly take progressively longer time to reach their thermal values.

Keywords

Cite

@article{arxiv.1712.04963,
  title  = {Fine-Grained Chaos in $AdS_2$ Gravity},
  author = {Felix M. Haehl and Moshe Rozali},
  journal= {arXiv preprint arXiv:1712.04963},
  year   = {2018}
}

Comments

8 pages; v2: minor clarifications, typos, added refs

R2 v1 2026-06-22T23:17:24.023Z