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Acoustic Fresnel lenses with extraordinary transmission

机译:菲涅尔声透镜具有出色的透射率

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摘要

We investigate numerically and experimentally highly efficient acoustic lenses based on the principle of extraordinary acoustic transmission. We study circular, flat lenses composed of perforated air channels. The geometry is similar to binary Fresnel lenses, and the lenses exploit several resonance mechanisms to enhance the transmission, such as Fabry–Perot resonances in the channels and cavity resonances on the lens surface. The proposed lenses are able to transmit up to 83% of the incident energy and generate sharp focusing with very high amplification (up to 16 dB experimentally). Furthermore, the resulting lenses are thinner than other designs providing similar performance, making them ideal candidates for application in acoustic imaging and medical diagnostics.
机译:我们根据非凡的声波传输原理研究数字和实验高效的声透镜。我们研究由穿孔的空气通道组成的圆形平面透镜。几何形状类似于二元菲涅耳透镜,并且透镜利用多种共振机制来增强透射,例如通道中的Fabry-Perot共振和透镜表面上的腔共振。所提出的透镜能够传输高达83%的入射能量,并以很高的放大倍率(实验上高达16 dB)产生清晰的聚焦。此外,与其他具有类似性能的设计相比,所得的透镜更薄,使其成为声学成像和医学诊断中的理想选择。

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