物理
拓扑(电路)
铰链
等级制度
束缚态
俘获
噪音(视频)
理论物理学
上下界
辐射
曲面(拓扑)
统计物理学
拓扑缺陷
波传播
经典力学
量子力学
网络拓扑
作者
Shunda Yin,Zhenyu Wang,Liping Ye,Hailong He,Manzhu Ke,Weiyin Deng,Jiuyang Lu,Zhengyou Liu
摘要
Bound states in the continuum (BICs), with the ability of trapping and manipulating waves within the radiation continuum, have gained significant attention for their potential applications in optics and acoustics. However, challenges arise in reducing wave leakage and noise from fabrication imperfections. The emergence of robust wave manipulations based on topological BICs (TBICs) offers promising solutions. Traditionally, TBICs of different dimensions are observed separately in distinct systems. Here, we report the experimental discovery of the coexistence of two-dimensional surface TBICs and one-dimensional hinge TBICs in a single three-dimensional phononic crystal system. Such an unprecedented dimensional hierarchy of TBICs is triggered by the mechanism of separability and protected by the valley Chern numbers. Notably, these TBICs inherit dispersive propagation characteristics from valley topology and can propagate robustly against defects without leakage. Our findings offer an efficient approach to multidimensional TBICs and can be applied in designing highly efficient acoustic devices for wave trapping and manipulation in multidimensional environments.
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