Violation of Eigenstate Thermalization Hypothesis in Quantum Field Theories with Higher-Form Symmetry
Abstract
We elucidate how the presence of higher-form symmetries affects the dynamics of thermalization in isolated quantum systems. Under reasonable assumptions, we analytically show that a -form symmetry in a -dimensional quantum field theory leads to the breakdown of the eigenstate thermalization hypothesis for many nontrivial -dimensional observables. For higher-form (i.e., ) symmetry, this indicates the absence of thermalization for observables that are non-local but much smaller than the whole system size. We numerically demonstrate this argument for the (2+1)-dimensional lattice gauge theory. While local observables such as the plaquette operator thermalize, the non-local observable exciting a magnetic dipole instead relaxes to the generalized Gibbs ensemble that takes account of the 1-form symmetry.
Keywords
Cite
@article{arxiv.2305.04984,
title = {Violation of Eigenstate Thermalization Hypothesis in Quantum Field Theories with Higher-Form Symmetry},
author = {Osamu Fukushima and Ryusuke Hamazaki},
journal= {arXiv preprint arXiv:2305.04984},
year = {2023}
}
Comments
7 pages, 4 figures, supplemental material with 6 pages and 1 figure; v2: minor modifications, references added, published version in PRL