Topological Phases with Average Symmetries: The Decohered, the Disordered, and the Intrinsic

IF 11.6 1区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Ruochen Ma, Jian-Hao Zhang, Zhen Bi, Meng Cheng, Chong Wang
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Abstract

Global symmetries greatly enrich the landscape of topological quantum phases, playing an essential role from topological insulators to fractional quantum Hall effect. Topological phases in mixed quantum states, originating from decoherence in open quantum systems or disorders in imperfect crystalline solids, have recently garnered significant interest. Unlike pure states, mixed quantum states can exhibit average symmetries—symmetries that keep the total ensemble invariant but not on each individual state. In this work, we present a systematic classification and characterization of average symmetry-protected topological (ASPT) phases applicable to generic symmetry groups, encompassing both average and exact symmetries, for bosonic and fermionic systems. Moreover, we formulate the theory of average symmetry-enriched topological (ASET) orders in disordered bosonic systems. Our systematic approach helps clarify nuanced issues in previous literature and uncovers compelling new physics. Notably, we discover that (1) the definition and classification of ASPT phases in decohered and disordered systems exhibit subtle differences, (2) despite these differences, ASPT phases in both settings can be classified and characterized under a unified framework of defect decoration and spectral sequence, (3) this systematic classification uncovers a plethora of ASPT phases that are intrinsically mixed, implying they can exclusively manifest in decohered or disordered systems where part of the symmetry is average, and (4) similarly for ASET, we find intrinsically disordered phases exhibiting exotic anyon behaviors—the ground states of such phases necessarily contain localized anyons, with gapless (yet still localized) excitation blue spectra. Published by the American Physical Society 2025
具有平均对称性的拓扑相:退相干、无序和本征
全局对称性极大地丰富了拓扑量子相的景观,从拓扑绝缘体到分数量子霍尔效应都发挥着至关重要的作用。混合量子态中的拓扑相,起源于开放量子系统中的退相干或不完美结晶固体中的紊乱,最近引起了人们的极大兴趣。与纯态不同,混合量子态可以表现出平均对称性,这种对称性使总系综保持不变,但不是每个单独的态。在这项工作中,我们提出了适用于一般对称群的平均对称保护拓扑(ASPT)相的系统分类和表征,包括玻色子和费米子系统的平均和精确对称。此外,我们还建立了无序玻色子系统中平均富对称拓扑(ASET)序理论。我们的系统方法有助于澄清以前文献中细微的问题,并揭示令人信服的新物理学。值得注意的是,我们发现:(1)退相干和无序系统中ASPT相的定义和分类存在细微差异;(2)尽管存在这些差异,但两种情况下的ASPT相都可以在缺陷装饰和光谱序列的统一框架下进行分类和表征;(3)这种系统分类揭示了大量本质上混合的ASPT相。这意味着它们只能在退相干或无序系统中表现出来,其中部分对称性是平均的。(4)对于ASET,我们发现本质上无序的相表现出奇异的任意子行为——这些相的基态必然包含局域任意子,具有无间隙(但仍然局域)的激发蓝光谱。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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