Unveiling operator growth in SYK quench dynamics
Abstract
We study non-equilibrium dynamics induced by a sudden quench of strongly correlated Hamiltonians with all-to-all interactions. By relying on a Sachdev-Ye-Kitaev (SYK) based quench protocol, we show that the time evolution of simple spin-spin correlation functions is highly sensitive to the degree of locality of the corresponding operators, once an appropriate set of fundamental fields is identified. By tracking the time-evolution of specific spin-spin correlation functions and their decay, we argue that it is possible to distinguish between operator hopping and operator growth dynamics; the latter being a hallmark of quantum chaos in many-body quantum systems. Such observation, in turn, could constitute a promising tool to probe the emergence of chaotic behavior, rather accessible in state-of-the-art quench setups.
Cite
@article{arxiv.2007.03551,
title = {Unveiling operator growth in SYK quench dynamics},
author = {Matteo Carrega and Joonho Kim and Dario Rosa},
journal= {arXiv preprint arXiv:2007.03551},
year = {2021}
}
Comments
v2: Fixed broken Unicode characters; REVTeX4-1, 13 pages, 14 figures