Thermalization propagation front and robustness against avalanches in localized systems
Abstract
We investigate the robustness of the many-body localized (MBL) phase to the quantum-avalanche instability by studying the dynamics of a localized spin chain coupled to a thermal bath through its leftmost site. By analyzing local magnetizations, we estimate the size of the thermalized sector of the chain and find that it increases logarithmically slowly in time. This logarithmically slow propagation of the thermalization front allows us to lower bound the slowest thermalization time, and find a broad parameter range where it scales fast enough with the system size that MBL is robust against thermalization induced by avalanches. The further finding that the imbalance -- a global quantity measuring localization -- thermalizes over a time scale exponential both in disorder strength and system size is in agreement with these results.
Keywords
Cite
@article{arxiv.2407.20985,
title = {Thermalization propagation front and robustness against avalanches in localized systems},
author = {Annarita Scocco and Gianluca Passarelli and Mario Collura and Procolo Lucignano and Angelo Russomanno},
journal= {arXiv preprint arXiv:2407.20985},
year = {2024}
}
Comments
12 pages, 8 figures. More references on logarithmic light cones in MBL. Discussion on the particle-number nonconserving case added