Time Evolution of the Symmetry Resolved Entanglement Entropy after a Mass Quench

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Main Authors: Rottoli, Federico, Mazzoni, Michele, Sailis, Fabio, Castro-Alvaredo, Olalla A.
Format: Preprint
Published: 2025
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author Rottoli, Federico
Mazzoni, Michele
Sailis, Fabio
Castro-Alvaredo, Olalla A.
author_facet Rottoli, Federico
Mazzoni, Michele
Sailis, Fabio
Castro-Alvaredo, Olalla A.
contents In this paper we investigate the properties of the symmetry resolved entanglement entropy after a mass quench in the Ising field theory. Since the theory is free and the post-quench state known explicitly, the one-point function of the relevant (composite) branch point twist field can be computed using form factor techniques, similar to previous work on the branch point twist field and the magnetisation, respectively. We find that the symmetry resolved entropy grows linearly in time at the same rate as the total entropy, and that there are sub-leading oscillatory corrections. This result provides the first explicit computation of the out-of-equilibrium dynamics of the symmetry resolved entropy employing twist fields in quantum field theory and is consistent with existing results based on the quasiparticle picture.
format Preprint
id arxiv_https___arxiv_org_abs_2502_06612
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Time Evolution of the Symmetry Resolved Entanglement Entropy after a Mass Quench
Rottoli, Federico
Mazzoni, Michele
Sailis, Fabio
Castro-Alvaredo, Olalla A.
High Energy Physics - Theory
Statistical Mechanics
Quantum Physics
In this paper we investigate the properties of the symmetry resolved entanglement entropy after a mass quench in the Ising field theory. Since the theory is free and the post-quench state known explicitly, the one-point function of the relevant (composite) branch point twist field can be computed using form factor techniques, similar to previous work on the branch point twist field and the magnetisation, respectively. We find that the symmetry resolved entropy grows linearly in time at the same rate as the total entropy, and that there are sub-leading oscillatory corrections. This result provides the first explicit computation of the out-of-equilibrium dynamics of the symmetry resolved entropy employing twist fields in quantum field theory and is consistent with existing results based on the quasiparticle picture.
title Time Evolution of the Symmetry Resolved Entanglement Entropy after a Mass Quench
topic High Energy Physics - Theory
Statistical Mechanics
Quantum Physics
url https://arxiv.org/abs/2502.06612