Deng Yuanchen, Benalcazar Wladimir A, Chen Ze-Guo, Oudich Mourad, Ma Guancong, Jing Yun
Graduate Program in Acoustics, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Department of Physics, Princeton University, Princeton, New Jersey 08542, USA.
Phys Rev Lett. 2022 Apr 29;128(17):174301. doi: 10.1103/PhysRevLett.128.174301.
Building upon the bulk-boundary correspondence in topological phases of matter, disclinations have recently been harnessed to trap fractionally quantized density of states (DOS) in classical wave systems. While these fractional DOS have associated states localized to the disclination's core, such states are not protected from deconfinement due to the breaking of chiral symmetry, generally leading to resonances which, even in principle, have finite lifetimes and suboptimal confinement. Here, we devise and experimentally validate in acoustic lattices a paradigm by which topological states bind to disclinations without a fractional DOS but which preserve chiral symmetry. The preservation of chiral symmetry pins the states at the midgap, resulting in their protected maximal confinement. The integer DOS at the defect results in twofold degenerate states that, due to symmetry constraints, do not gap out. Our study provides a fresh perspective about the interplay between symmetry protection in topological phases and topological defects, with possible applications in classical and quantum systems alike.
基于物质拓扑相中的体-边界对应关系,最近人们利用位错在经典波系统中捕获分数化量子化的态密度(DOS)。虽然这些分数化DOS具有局域在位错核心的相关态,但由于手征对称性的破缺,这些态无法免受解禁束缚,通常会导致共振,即使在原则上,这些共振也具有有限的寿命且限制效果欠佳。在此,我们在声学晶格中设计并通过实验验证了一种范式,通过该范式,拓扑态与位错结合,不存在分数化DOS,但保留手征对称性。手征对称性的保留将这些态钉扎在能隙中间,从而实现其受保护的最大限制。缺陷处的整数DOS导致双重简并态,由于对称性约束,这些态不会出现能隙。我们的研究为拓扑相中的对称性保护与拓扑缺陷之间的相互作用提供了全新视角,在经典和量子系统中均有潜在应用。