Chaos and pole skipping in CFT$_2$
Abstract
Recent work has suggested an intriguing relation between quantum chaos and energy density correlations, known as pole skipping. We investigate this relationship in two dimensional conformal field theories on a finite size spatial circle by studying the thermal energy density retarded two-point function on a torus. We find that the location of pole skipping in the complex frequency plane is determined by the central charge and the stress energy one-point function on the torus. In addition, we find a bound on in compact, unitary CFTs identical to the chaos bound, . This bound is saturated in large CFTs with a sparse light spectrum, as quantified by arXiv:1405.5137, for all temperatures above the dual Hawking-Page transition temperature.
Keywords
Cite
@article{arxiv.2009.00500,
title = {Chaos and pole skipping in CFT$_2$},
author = {David M. Ramirez},
journal= {arXiv preprint arXiv:2009.00500},
year = {2022}
}
Comments
16 pages, 2 figures