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声学系统中的非阿贝尔拓扑相及其商关系。

Non-Abelian Topological Phases and Their Quotient Relations in Acoustic Systems.

作者信息

Sun Xiao-Chen, Wang Jia-Bao, He Cheng, Chen Yan-Feng

机构信息

National Laboratory of Solid State Microstructures and Department of Materials Science and Engineering, Nanjing University, Nanjing 210093, China.

Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing 210093, China.

出版信息

Phys Rev Lett. 2024 May 24;132(21):216602. doi: 10.1103/PhysRevLett.132.216602.

Abstract

Non-Abelian topological phases (NATPs) exhibit enigmatic intrinsic physics distinct from well-established Abelian topological phases, while lacking straightforward configuration and manipulation, especially for classical waves. In this Letter, we exploit novel braiding-type couplings among a pair of triple-component acoustic dipoles, which act as functional elements with effective imaginary couplings. Sequencing them in one dimension allows us to generate acoustic NATPs in a compact yet time-reversal invariant Hermitian system. We further provide the whole phase diagram that encompasses all i, j, and k non-Abelian phases, and directly demonstrate their unique quotient relations via different end point states. Our NATPs based on real-space braiding may inspire the exploration of acoustic devices with non-commutative characters.

摘要

非阿贝尔拓扑相(NATPs)展现出与成熟的阿贝尔拓扑相截然不同的神秘内在物理性质,同时缺乏直接的构型和操控方式,尤其是对于经典波而言。在本信函中,我们利用了一对三分量声学偶极子之间新颖的编织型耦合,这些偶极子充当具有有效虚数耦合的功能元件。在一维中对它们进行排序使我们能够在一个紧凑但时间反演不变的厄米系统中生成声学NATPs。我们进一步给出了包含所有i、j和k非阿贝尔相的完整相图,并通过不同的端点状态直接展示了它们独特的商关系。我们基于实空间编织的NATPs可能会激发对具有非对易特性的声学器件的探索。

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