Coupled resonant modes in twisted acoustic metamaterials

被引:0
|
作者
Ying Cheng
Xiaojun Liu
机构
[1] Nanjing University,Key Laboratory of Modern Acoustics
来源
Applied Physics A | 2012年 / 109卷
关键词
Dispersion Curve; Twist Angle; Coupling Interaction; Transmission Band; Transparency Window;
D O I
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中图分类号
学科分类号
摘要
Acoustic metamaterials constructed by resonant microelements in subwavelength scale were generally characterized by the effective medium approximation theory, which neglects the interaction between adjacent elements. In this paper, we show that twisting the orientation of resonators in acoustic metamaterials produces secondary coupled resonant modes by introducing internal vibration interaction. Metamaterials composed of a single-slit Helmholtz resonator arranged in two-dimensional square lattice are investigated. We rotate a portion of the resonator so that the adjacent resonators in a ΓX direction have a twist angle of φ. For the system with φ=180∘, the coupling interaction produces the symmetric coupled mode in in-phase oscillation and the antisymmetric coupled mode in out-of-phase oscillation. This acoustic analog of “hybridization effect” leads to a sharp transparency window in the extended locally-resonant forbidden gap, which is analogous to the phenomenon of electromagnetically induced transparency. Such coupled resonant modes may have potential applications in sound wave manipulations such as acoustic filtering and imaging.
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页码:805 / 811
页数:6
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