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Ebner, Lukas ; Schäfer, Andreas ; Seidl, Clemens ; Müller, Berndt ; Yao, Xiaojun

Entanglement entropy of ( 2+1 )-dimensional SU(2) lattice gauge theory on plaquette chains

Ebner, Lukas , Schäfer, Andreas , Seidl, Clemens , Müller, Berndt and Yao, Xiaojun (2024) Entanglement entropy of ( 2+1 )-dimensional SU(2) lattice gauge theory on plaquette chains. Physical Review D 110 (1), 014505.

Date of publication of this fulltext: 18 Feb 2025 05:32
Article
DOI to cite this document: 10.5283/epub.74880


Abstract

We study the entanglement entropy of Hamiltonian SU(2) lattice gauge theory in 2 +1 dimensions on linear plaquette chains and show that the entanglement entropies of both ground and excited states follow Page curves. The transition of the subsystem size dependence of the entanglement entropy from the area law for the ground state to the volume law for highly excited states is found to be ...

We study the entanglement entropy of Hamiltonian SU(2) lattice gauge theory in 2 +1 dimensions on linear plaquette chains and show that the entanglement entropies of both ground and excited states follow Page curves. The transition of the subsystem size dependence of the entanglement entropy from the area law for the ground state to the volume law for highly excited states is found to be described by a universal crossover function. Quantum many-body scars in the middle of the spectrum, which are present in the electric flux truncated Hilbert space, where the gauge theory can be mapped onto an Ising model, disappear when higher electric field representations are included in the Hilbert space basis. This suggests the continuum (2+1)-dimensional SU(2) gauge theory does not have such scarred states.



Involved Institutions


Details

Item typeArticle
Journal or Publication TitlePhysical Review D
Publisher:American Physical Society (APS)
Volume:110
Number of Issue or Book Chapter:1
Page Range:014505
Date9 July 2024
InstitutionsPhysics > Institute of Theroretical Physics > Chair Professor Schäfer > Group Andreas Schäfer
Identification Number
ValueType
10.1103/PhysRevD.110.014505DOI
Dewey Decimal Classification500 Science > 530 Physics
StatusPublished
RefereedYes, this version has been refereed
Created at the University of RegensburgPartially
URN of the UB Regensburgurn:nbn:de:bvb:355-epub-748801
Item ID74880

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