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Main Authors: Costa, Matheus H. Martins, Nogueira, Flavio S., Brink, Jeroen van den
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2410.01908
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author Costa, Matheus H. Martins
Nogueira, Flavio S.
Brink, Jeroen van den
author_facet Costa, Matheus H. Martins
Nogueira, Flavio S.
Brink, Jeroen van den
contents We investigate the effects of the presence of conserved charges on the momentum-space entanglement of Quantum Field Theories (QFTs). We show that if a given model has superselection sectors, then it allows for different notions of momentum modes, each associated with a complete set of commuting observables. Applying this idea to investigate the entanglement of momentum degrees of freedom on both sides of the abelian Bosonization duality, we find that different tensor product partitions are mapped into each other and give explicit examples to sustain our findings. The conditions on which our conclusions may be generalized to other duality transformations, which require the introduction of a notion stricter than the most general possible, are laid and directions for further work are given.
format Preprint
id arxiv_https___arxiv_org_abs_2410_01908
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Superselection Rules, Bosonization Duality in 1+1 Dimensions and Momentum-Space Entanglement
Costa, Matheus H. Martins
Nogueira, Flavio S.
Brink, Jeroen van den
High Energy Physics - Theory
Strongly Correlated Electrons
We investigate the effects of the presence of conserved charges on the momentum-space entanglement of Quantum Field Theories (QFTs). We show that if a given model has superselection sectors, then it allows for different notions of momentum modes, each associated with a complete set of commuting observables. Applying this idea to investigate the entanglement of momentum degrees of freedom on both sides of the abelian Bosonization duality, we find that different tensor product partitions are mapped into each other and give explicit examples to sustain our findings. The conditions on which our conclusions may be generalized to other duality transformations, which require the introduction of a notion stricter than the most general possible, are laid and directions for further work are given.
title Superselection Rules, Bosonization Duality in 1+1 Dimensions and Momentum-Space Entanglement
topic High Energy Physics - Theory
Strongly Correlated Electrons
url https://arxiv.org/abs/2410.01908