解耦(概率)
水下
散射
声学
带宽(计算)
材料科学
吸收(声学)
波长
光学
扩散
横波
声波
剪切(地质)
物理
计算机科学
电信
地质学
复合材料
工程类
热力学
海洋学
控制工程
作者
Xinyu Zou,Gaokun Yu,Quan‐Xing Liu
摘要
Different approaches have been proposed to reduce the scattering cross section (SCS) of objects, including the approach based on the absorption, the diffusion, and the coordinate transformation. However, for underwater acoustic waves, there exists two main challenges: the lack of a valid mechanism to unify these approaches and the existence of the coupling between the shear waves inside the solid and pressure waves in water. To break these limits, an elastic decoupling mechanism and a cross section-based manipulation mechanism are proposed to design unit cells using the soft solid material, and with the aid of two involved resonances of different absorption abilities, we propose a hybrid diffusion and absorption mechanism to design a metasurface for the reduction of SCS. Owing to the hybrid mechanism, the bandwidth of measured monostatic SCS reduction below −10 dB covers from 4 to 22 kHz, the corresponding FBW is 138.5%, and the thickness of fabricated sample approximates to 0.42λc, with λc being the central wavelength of working bandwidth.
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