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由扭曲双层光栅控制的声学莫尔效应的实验研究。

Experimental investigation of acoustic moiré effect controlled by twisted bilayer gratings.

作者信息

Hu Yu, Lin Zi-Bin, Li Zong-Lin, Peng Yu-Gui, Zhu Xue-Feng

机构信息

School of Physics and Innovation Institute, Huazhong University of Science and Technology, Wuhan 430074, China.

School of Physics and Innovation Institute, Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

Ultrasonics. 2024 Jul;141:107338. doi: 10.1016/j.ultras.2024.107338. Epub 2024 May 3.

Abstract

Recently, the moiré pattern has attracted lots of attention by superimposing two planar structures of regular geometries, such as two sets of metasurfaces or gratings. Here, we show the experimental investigation of acoustic moiré effect by using twisted bilayer gratings (i.e., one grating twisted with respect to the other). We observed the guided resonance that occurred when the incident ultrasound beam was coupled with the guiding modes in a meta-grating, significantly influencing the reflection and transmission. Tunable guided resonances from the moiré effect with complete ultrasound reflection at different frequencies were further demonstrated in experiments. Combining the measurements of transmission spectra and the Fast Fourier Transform analyses, we reveal the guided resonance frequencies of moiré ultrasonic metasurface can be effectively controlled by adjusting the twisting angle of the bilayer gratings. Our results can be explained in a simplified model based on the band folding theory, providing a reliable prediction on the precise control of ultrasound reflection via the twisting angle adjustment. Our work extends the moiré metasurface from optics into acoustics, which shows more possibilities for the ultrasound beam engineering from the moiré effect and enables the exploration of functional acoustic devices for ultrasound imaging, treatment and diagnosis.

摘要

最近,通过叠加两个具有规则几何形状的平面结构,如两组超表面或光栅,莫尔条纹图案引起了广泛关注。在此,我们展示了利用扭曲双层光栅(即一个光栅相对于另一个光栅扭曲)对声学莫尔效应进行的实验研究。我们观察到,当入射超声束与超光栅中的导模耦合时会出现导模共振,这对反射和透射有显著影响。实验进一步证明了在不同频率下具有完全超声反射的莫尔效应产生的可调导模共振。结合透射光谱测量和快速傅里叶变换分析,我们发现通过调整双层光栅的扭曲角度,可以有效地控制莫尔超声超表面的导模共振频率。我们的结果可以在基于能带折叠理论的简化模型中得到解释,为通过扭曲角度调整精确控制超声反射提供了可靠的预测。我们的工作将莫尔超表面从光学领域扩展到了声学领域,这为基于莫尔效应的超声束工程展示了更多可能性,并有助于探索用于超声成像、治疗和诊断的功能性声学器件。

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