Tian Zhenhua, Shen Chen, Li Junfei, Reit Eric, Bachman Hunter, Socolar Joshua E S, Cummer Steven A, Jun Huang Tony
Department of Mechanical Engineering and Materials Science, Duke University, Durham, NC, 27708, USA.
Department of Aerospace Engineering, Mississippi State University, Starkville, MS, 39762, USA.
Nat Commun. 2020 Feb 7;11(1):762. doi: 10.1038/s41467-020-14553-0.
The valley degree of freedom in crystals offers great potential for manipulating classical waves, however, few studies have investigated valley states with complex wavenumbers, valley states in graded systems, or dispersion tuning for valley states. Here, we present tunable valley phononic crystals (PCs) composed of hybrid channel-cavity cells with three tunable parameters. Our PCs support valley states and Dirac cones with complex wavenumbers. They can be configured to form chirped valley PCs in which edge modes are slowed to zero group velocity states, where the energy at different frequencies accumulates at different designated locations. They enable multiple functionalities, including tuning of dispersion relations for valley states, robust routing of surface acoustic waves, and spatial modulation of group velocities. This work may spark future investigations of topological states with complex wavenumbers in other classical systems, further study of topological states in graded materials, and the development of acoustic devices.
晶体中的谷自由度为操控经典波提供了巨大潜力,然而,很少有研究探讨具有复波数的谷态、梯度系统中的谷态或谷态的色散调谐。在此,我们展示了由具有三个可调参数的混合通道 - 腔单元组成的可调谐谷声子晶体(PCs)。我们的PCs支持具有复波数的谷态和狄拉克锥。它们可以被配置成啁啾谷PCs,其中边缘模式被减慢到零群速度状态,不同频率的能量在不同的指定位置积累。它们具有多种功能,包括谷态色散关系的调谐、表面声波的稳健路由以及群速度的空间调制。这项工作可能会激发未来对其他经典系统中具有复波数的拓扑态的研究、对梯度材料中拓扑态的进一步研究以及声学器件的开发。