物理学进展 ›› 2026, Vol. 46 ›› Issue (3): 134-164.doi: 10.13725/j.cnki.pip.2026.03.003

• • 上一篇    

一维拓展 SSH 模型的研究进展:从厄米拓扑不变量到非厄米新奇物理

许益广,于海鹏,陈紫轩,刘超飞   

  1. 江西理工大学理学院,赣州 341000
  • 收稿日期:2026-02-04 修回日期:2026-03-11 接受日期:2026-03-23 出版日期:2026-06-20 发布日期:2026-06-20
  • 基金资助:
    到国家自然科学基金项目 (No.12375014、 No.11875149)、江西省青年井冈学者计划以及江西理工 大学清江拔尖人才计划

Research progress on one-dimensional extended SSH models: from Hermitian topological invariants to non-Hermitian novel physics

XU Yiguang, YU Haipeng, CHEN Zixuan, LIU Chaofei   

  1. School of Science, Jiangxi University of Science and Technology, Ganzhou 341000, China
  • Received:2026-02-04 Revised:2026-03-11 Accepted:2026-03-23 Online:2026-06-20 Published:2026-06-20

摘要:

拓扑物态的发现和探索深刻地改变了人们对凝聚态物理的认识,而一维 Su-SchriefferHeeger (SSH) 模型由于其数学结构的简单性以及物理内涵的普适性,成为研究拓扑绝缘体及其 非厄米推广的理想平台。本文主要对一维扩展 SSH 模型的研究进展及最新动态进行梳理和总结。 首先回顾了厄米框架下 SSH 模型的理论发展,介绍了通过引入次近邻长程相互作用、多带原胞结 构而产生的高陈数拓扑相和丰富的边界态。然后重点介绍了非厄米机制引入之后成为研究热点的 两类新奇物理现象,宇称–时间 (parity-time) 对称性破缺引起的相变和非互易耦合驱动的非厄米 趋肤效应。特别是后者直接导致传统体边对应关系失效,促使了广义布里渊区非布洛赫能带理论 的出现。从实验上归纳了利用光子晶体、继电器逻辑 (relay logic circuit, RLC) 拓扑电路等物理 平台模拟上述理论模型的成果,讨论了实验观测中的关键技术及难点。本文最后对非厄米一维拓 扑物理机制向高维体系、多体相互作用、新型拓扑器件应用等方向的展望做出预期,以期给相关 领域研究人员提供一定的参考。 

关键词: 拓展 SSH 模型, 长程相互作用, 非厄米物理, 宇称–时间对称, 非厄米趋肤效应

Abstract:

The discovery and exploration of topological states of matter have profoundly reshaped our understanding of condensed matter physics. The one-dimensional Su-Schrieffer-Heeger (SSH) model, characterized by its mathematical simplicity and physical universality, serves as an ideal platform for investigating topological insulators and their non-Hermitian extensions. This paper reviews the research progress and recent developments regarding one-dimensional extended SSH models. First, we review the theoretical evolution of the SSH model within the Hermitian framework, discussing high winding number topological phases and rich boundary states arising from next-nearest-neighbor long-range interactions and multi-band unit cell structures. Next, we highlight the novel physical phenomena that have emerged as research hotspots following the introduction of non-Hermitian mechanisms: specifically, phase transitions induced by PT-symmetry breaking and the non-Hermitian Skin Effect (NHSE) driven by non-reciprocal coupling. The latter, in particular, leads to the breakdown of the conventional bulk-boundary correspondence, necessitating the development of non-Bloch band theory based on the generalized Brillouin zone. Experimentally, we summarize achievements in simulating these theoretical models using physical platforms such as photonic crystals and RLC topological circuits, discussing key techniques and challenges in experimental observation. Finally, we provide an outlook on future directions, including the extension of non-Hermitian one-dimensional topological physics to higher-dimensional systems, many-body interactions, and novel topological device applications, aiming to provide a reference for researchers in related fields.

Key words: extended SSH model, long-range interactions, non-Hermitian physics, paritytime symmetry, non-Hermitian skin effect

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