Entanglement and symmetry resolution in two dimensional free quantum field theories

Abstract We present a thorough analysis of the entanglement entropies related to different symmetry sectors of free quantum field theories (QFT) with an internal U(1) symmetry. We provide explicit analytic computations for the charged moments of Dirac and complex scalar fields in two spacetime dimen...

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Main Authors: Sara Murciano, Giuseppe Di Giulio, Pasquale Calabrese
Format: Article
Language:English
Published: SpringerOpen 2020-08-01
Series:Journal of High Energy Physics
Subjects:
Online Access:http://link.springer.com/article/10.1007/JHEP08(2020)073
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spelling doaj-3ed918718117490cb3c954bdfda49e732020-11-25T03:01:40ZengSpringerOpenJournal of High Energy Physics1029-84792020-08-012020814210.1007/JHEP08(2020)073Entanglement and symmetry resolution in two dimensional free quantum field theoriesSara Murciano0Giuseppe Di Giulio1Pasquale Calabrese2SISSA and INFN Sezione di TriesteSISSA and INFN Sezione di TriesteSISSA and INFN Sezione di TriesteAbstract We present a thorough analysis of the entanglement entropies related to different symmetry sectors of free quantum field theories (QFT) with an internal U(1) symmetry. We provide explicit analytic computations for the charged moments of Dirac and complex scalar fields in two spacetime dimensions, both in the massive and massless cases, using two different approaches. The first one is based on the replica trick, the computation of the partition function on Riemann surfaces with the insertion of a flux α, and the introduction of properly modified twist fields, whose two-point function directly gives the scaling limit of the charged moments. With the second method, the diagonalisation in replica space maps the problem to the computation of a partition function on a cut plane, that can be written exactly in terms of the solutions of non-linear differential equations of the Painlevé V type. Within this approach, we also derive an asymptotic expansion for the short and long distance behaviour of the charged moments. Finally, the Fourier transform provides the desired symmetry resolved entropies: at the leading order, they satisfy entanglement equipartition and we identify the subleading terms that break it. Our analytical findings are tested against exact numerical calculations in lattice models.http://link.springer.com/article/10.1007/JHEP08(2020)073Conformal Field TheoryField Theories in Lower Dimensions
collection DOAJ
language English
format Article
sources DOAJ
author Sara Murciano
Giuseppe Di Giulio
Pasquale Calabrese
spellingShingle Sara Murciano
Giuseppe Di Giulio
Pasquale Calabrese
Entanglement and symmetry resolution in two dimensional free quantum field theories
Journal of High Energy Physics
Conformal Field Theory
Field Theories in Lower Dimensions
author_facet Sara Murciano
Giuseppe Di Giulio
Pasquale Calabrese
author_sort Sara Murciano
title Entanglement and symmetry resolution in two dimensional free quantum field theories
title_short Entanglement and symmetry resolution in two dimensional free quantum field theories
title_full Entanglement and symmetry resolution in two dimensional free quantum field theories
title_fullStr Entanglement and symmetry resolution in two dimensional free quantum field theories
title_full_unstemmed Entanglement and symmetry resolution in two dimensional free quantum field theories
title_sort entanglement and symmetry resolution in two dimensional free quantum field theories
publisher SpringerOpen
series Journal of High Energy Physics
issn 1029-8479
publishDate 2020-08-01
description Abstract We present a thorough analysis of the entanglement entropies related to different symmetry sectors of free quantum field theories (QFT) with an internal U(1) symmetry. We provide explicit analytic computations for the charged moments of Dirac and complex scalar fields in two spacetime dimensions, both in the massive and massless cases, using two different approaches. The first one is based on the replica trick, the computation of the partition function on Riemann surfaces with the insertion of a flux α, and the introduction of properly modified twist fields, whose two-point function directly gives the scaling limit of the charged moments. With the second method, the diagonalisation in replica space maps the problem to the computation of a partition function on a cut plane, that can be written exactly in terms of the solutions of non-linear differential equations of the Painlevé V type. Within this approach, we also derive an asymptotic expansion for the short and long distance behaviour of the charged moments. Finally, the Fourier transform provides the desired symmetry resolved entropies: at the leading order, they satisfy entanglement equipartition and we identify the subleading terms that break it. Our analytical findings are tested against exact numerical calculations in lattice models.
topic Conformal Field Theory
Field Theories in Lower Dimensions
url http://link.springer.com/article/10.1007/JHEP08(2020)073
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AT giuseppedigiulio entanglementandsymmetryresolutionintwodimensionalfreequantumfieldtheories
AT pasqualecalabrese entanglementandsymmetryresolutionintwodimensionalfreequantumfieldtheories
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