Emergent topology in many-body dissipative quantum matter

IF 3.7 2区 物理与天体物理 Q1 Physics and Astronomy Physical Review B Pub Date : 2025-01-31 DOI:10.1103/physrevb.111.035157
Antonio M. García-García, Lucas Sá, Jacobus J. M. Verbaarschot, Can Yin
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Abstract

The identification, description, and classification of topological features is an engine of discovery and innovation in several fields of physics. This research encompasses a broad variety of systems, from the integer and fractional Chern insulators in condensed matter, to protected states in complex photonic lattices in optics, and the structure of the QCD vacuum. Here, we introduce another playground for topology: the dissipative dynamics of pseudo-Hermitian many-body quantum systems. For that purpose, we study two different systems, the dissipative Sachdev-Ye-Kitaev (SYK) model, and a quantum chaotic dephasing spin chain. For the two different many-body models, we find the same topological features for a wide range of parameters suggesting that they are universal. In the SYK model, we identify four universality classes, related to pseudo-Hermiticity, characterized by a rectangular block representation of the vectorized Liouvillian that is directly related to the existence of an anomalous trace of the unitary operator implementing fermionic exchange. As a consequence of this rectangularization, we identify a topological index ν that only depends on symmetry. Another distinct consequence of the rectangularization is the observation, for any coupling to the bath, of purely real topological modes in the Liouvillian. The level statistics of these real modes agree with that of the corresponding random matrix ensemble and therefore can be employed to characterize the four topological symmetry classes. In the limit of weak coupling to the bath, topological modes govern the approach to equilibrium, which may enable a direct path for experimental confirmation of topology in dissipative many-body quantum chaotic systems. Published by the American Physical Society 2025
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多体耗散量子物质中的涌现拓扑
拓扑特征的识别、描述和分类是物理学多个领域发现和创新的引擎。这项研究涵盖了各种各样的系统,从凝聚态物质中的整数和分数陈氏绝缘体,到光学中复杂光子晶格中的保护态,以及QCD真空的结构。在这里,我们介绍了拓扑的另一个游乐场:伪厄米多体量子系统的耗散动力学。为此,我们研究了两个不同的系统,耗散的Sachdev-Ye-Kitaev (SYK)模型和量子混沌脱相自旋链。对于两种不同的多体模型,我们发现相同的拓扑特征适用于广泛的参数范围,这表明它们是通用的。在SYK模型中,我们确定了与伪厄米性相关的四个普惠类,其特征是向量化Liouvillian的矩形块表示,这与实现费米子交换的酉算子的异常迹的存在性直接相关。作为这种矩形化的结果,我们确定了一个仅依赖于对称性的拓扑指标ν。矩形化的另一个明显的结果是观察到,对于任何与槽的耦合,在刘维廉的纯实拓扑模式。这些实模态的水平统计量与相应的随机矩阵系综的水平统计量一致,因此可以用来表征四种拓扑对称类。在弱耦合的极限下,拓扑模式控制着接近平衡的方法,这可能为耗散多体量子混沌系统拓扑的实验确认提供了一条直接途径。2025年由美国物理学会出版
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来源期刊
Physical Review B
Physical Review B 物理-物理:凝聚态物理
CiteScore
6.70
自引率
32.40%
发文量
0
审稿时长
3.0 months
期刊介绍: Physical Review B (PRB) is the world’s largest dedicated physics journal, publishing approximately 100 new, high-quality papers each week. The most highly cited journal in condensed matter physics, PRB provides outstanding depth and breadth of coverage, combined with unrivaled context and background for ongoing research by scientists worldwide. PRB covers the full range of condensed matter, materials physics, and related subfields, including: -Structure and phase transitions -Ferroelectrics and multiferroics -Disordered systems and alloys -Magnetism -Superconductivity -Electronic structure, photonics, and metamaterials -Semiconductors and mesoscopic systems -Surfaces, nanoscience, and two-dimensional materials -Topological states of matter
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