论文标题

多局部非亚米特系统中的非亚伯拓扑

Exceptional Non-Abelian Topology in Multiband Non-Hermitian Systems

论文作者

Guo, Cui-Xian, Chen, Shu, Ding, Kun, Hu, Haiping

论文摘要

缺陷的光谱退化(称为特殊点(EP))是光学,声学和其他非保守系统中各种有趣现象的核心。尽管在过去的二十年中进行了广泛的研究,但涉及多个特殊点或线条及其相互作用的\ textit {集体}行为(例如,歼灭,结合,结合,编织等)很少被理解。在这里,我们提出了一项普遍的非亚伯保护规则,该规则管理着通用多局部非热门系统中的这些集体行为,并发现了几种违反直觉现象。我们证明了两个具有相反电荷的EP(即使创建的成对)不一定会消灭,这取决于它们彼此接近的方式。此外,我们揭示了该保护规则对允许的特殊线配置施加了严格的约束。它不包括Hopf Link之类的结构,但允许由非交互性异常线组成的新型交错环。这些有趣的现象是通过混凝土模型来说明的,这些模型可以很容易地在诸如耦合的声腔,光学波导和环形谐振器等平台中实现。我们的发现为对非洲拓扑的特殊非亚伯拓扑的全面理解提供了基石,并阐明了基于非保守系统中特殊退化性的多功能操作和应用。

Defective spectral degeneracy, known as exceptional point (EP), lies at the heart of various intriguing phenomena in optics, acoustics, and other nonconservative systems. Despite extensive studies in the past two decades, the \textit{collective} behaviors (e.g., annihilation, coalescence, braiding, etc.) involving multiple exceptional points or lines and their interplay have been rarely understood. Here we put forward a universal non-Abelian conservation rule governing these collective behaviors in generic multiband non-Hermitian systems and uncover several counterintuitive phenomena. We demonstrate that two EPs with opposite charges (even the pairwise created) do not necessarily annihilate, depending on how they approach each other. Furthermore, we unveil that the conservation rule imposes strict constraints on the permissible exceptional-line configurations. It excludes structures like Hopf link yet permits novel staggered rings composed of noncommutative exceptional lines. These intriguing phenomena are illustrated by concrete models which could be readily implemented in platforms like coupled acoustic cavities, optical waveguides, and ring resonators. Our findings lay the cornerstone for a comprehensive understanding of the exceptional non-Abelian topology and shed light on the versatile manipulations and applications based on exceptional degeneracies in nonconservative systems.

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