Entanglement Properties of Gauge Theories from Higher-Form Symmetries

IF 11.6 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Wen-Tao Xu, Tibor Rakovszky, Michael Knap, Frank Pollmann
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Abstract

We explore the relationship between higher-form symmetries and entanglement properties in lattice gauge theories with discrete gauge groups, which can exhibit both topologically ordered phases and higher-form symmetry-protected topological (SPT) phases. Our study centers on a generalization of the Fradkin-Shenker model describing Z2 lattice gauge theory with matter, where the Gauss law constraint can be either emergent or exact. The phase diagram includes a topologically ordered deconfined phase and a nontrivial SPT phase protected by a 1-form and a 0-form symmetry, among others. We obtain the following key findings: First, the entanglement properties of the model depend on whether the 1-form symmetries and the Gauss law constraint are exact or emergent. For the emergent Gauss law, the entanglement spectrum (ES) of the nontrivial SPT phase exhibits degeneracies, which are robust at low energies against weak perturbations that explicitly break the exact 1-form symmetry. When the Gauss law and the 1-form symmetry are both exact, the ES degeneracy is extensive. This extensive degeneracy turns out to be fragile and can be removed completely by infinitesimal perturbations that explicitly break the exact 1-form symmetry while keeping the Gauss law exact. Second, we consider the ES in the topologically ordered phase where 1-form symmetries are spontaneously broken. In contrast to the ES of the nontrivial SPT phase, we find that spontaneous higher-form symmetry breaking removes “half” of the ES levels, leading to a nondegenerate ES in the topologically ordered phase, in general. Third, we derive a connection between spontaneous higher-form symmetry breaking and the topological entanglement entropy (TEE). Using this relation, we investigate the entanglement entropy that can be distilled in the deconfined phase of the original Fradkin-Shenker model using gauge-invariant measurements. We show that the TEE is robust against the measurement when the 1-form symmetry is emergent but it is fragile when the 1-form symmetry is exact. Our results demonstrate the advantage of higher-form symmetries for understanding entanglement properties of gauge theories. Published by the American Physical Society 2025
高形式对称规范理论的纠缠性质
本文研究了具有离散规范群的晶格规范理论中高形式对称性与纠缠特性之间的关系,该理论可以同时表现出拓扑有序相和高形式对称保护拓扑相。我们的研究集中在用物质描述Z2晶格规范理论的Fradkin-Shenker模型的推广上,其中高斯定律约束可以是紧急的也可以是精确的。相位图包括一个拓扑有序的定义相位和一个由1形式和0形式对称保护的非平凡SPT相位等。首先,模型的纠缠特性取决于1型对称性和高斯定律约束是精确的还是突现的。对于涌现的高斯定律,非平凡SPT相的纠缠谱(ES)表现出简并,在低能量下对明显打破精确的1-形式对称的弱扰动具有鲁棒性。当高斯定律和1型对称都是精确时,ES简并是广泛的。这种广泛的简并性被证明是脆弱的,可以被无穷小的扰动完全消除,这些扰动明确地打破了精确的1型对称,同时保持了高斯定律的精确性。其次,我们考虑了拓扑有序相中的ES,其中1-form对称性被自发破坏。与非平凡SPT相的ES相比,我们发现自发的高形式对称破缺消除了“一半”的ES能级,导致拓扑有序相中的非简并ES。第三,我们推导了自发高形式对称破缺与拓扑纠缠熵(TEE)之间的联系。利用这一关系,我们研究了可以在原始Fradkin-Shenker模型的定义相位中使用量规不变测量提取的纠缠熵。我们证明了当1-形式对称出现时,TEE对测量具有鲁棒性,但当1-形式对称精确时,TEE是脆弱的。我们的结果证明了高形式对称性在理解规范理论的纠缠特性方面的优势。2025年由美国物理学会出版
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来源期刊
Physical Review X
Physical Review X PHYSICS, MULTIDISCIPLINARY-
CiteScore
24.60
自引率
1.60%
发文量
197
审稿时长
3 months
期刊介绍: Physical Review X (PRX) stands as an exclusively online, fully open-access journal, emphasizing innovation, quality, and enduring impact in the scientific content it disseminates. Devoted to showcasing a curated selection of papers from pure, applied, and interdisciplinary physics, PRX aims to feature work with the potential to shape current and future research while leaving a lasting and profound impact in their respective fields. Encompassing the entire spectrum of physics subject areas, PRX places a special focus on groundbreaking interdisciplinary research with broad-reaching influence.
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