Measurement-induced transitions beyond Gaussianity: a single particle description
Quantum Physics
2024-05-21 v2 Statistical Mechanics
Abstract
Repeated measurements can induce entanglement phase transitions in the dynamics of quantum systems. Interacting models, both chaotic and integrable, generically show a stable volume-law entangled phase at low measurement rates which disappears for free, Gaussian fermions. Interactions break the Gaussianity of a dynamical map in its unitary part, but non-Gaussianity can be introduced through measurements as well. By comparing the entanglement and non-Gaussianity structure of different protocols, we propose a new single-particle indicator of the measurement-induced phase transition and we use it to argue in favour of the stability of the transition when non-Gaussianity is purely provided by measurements
Cite
@article{arxiv.2311.09043,
title = {Measurement-induced transitions beyond Gaussianity: a single particle description},
author = {Luca Lumia and Emanuele Tirrito and Rosario Fazio and Mario Collura},
journal= {arXiv preprint arXiv:2311.09043},
year = {2024}
}
Comments
10 pages, 4 figures