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Negative refraction induced acoustic concentrator and the effects of scattering cancellation, imaging, and mirage

机译:负折射感应声集中器以及散射消除,成像和海市rage楼的影响

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We present a three-dimensional acoustic concentrator capable of significantly enhancing the sound intensity in the compressive region with scattering cancellation, imaging, and mirage effects. The concentrator shell is built by isotropic gradient negative-index materials, which together with an exterior host medium slab constructs a pair of complementary media. The enhancement factor, which can approach infinity by tuning the geometric parameters, is always much higher than that of a traditional concentrator made by positive-index materials with the same size. The acoustic scattering theory is applied to derive the pressure field distribution of the concentrator, which is consistent with the numerical full-wave simulations. The inherent acoustic impedance match at the interfaces of the shell as well as the inverse processes of "negative refraction-progressive curvature-negative refraction" for arbitrary sound rays can exactly cancel the scattering of the concentrator. In addition, the concentrator shell can also function as an acoustic spherical magnifying superiens, which produces a perfect image with the same shape, with bigger geometric and acoustic parameters located at a shifted position. Then some acoustic mirages are observed whereby the waves radiated from (scattered by) an object located in the center region may seem to be radiated from (scattered by) its image. Based on the mirage effect, we further propose an intriguing acoustic transformer which can transform the sound scattering pattern of one object into another object at will with arbitrary geometric, acoustic, and location parameters.
机译:我们提出了一种三维声波集中器,它能够通过散射消除,成像和海市rage楼效应显着提高压缩区域的声强。选矿厂的壳体由各向同性的梯度负折射率材料制成,该材料与外部主体介质平板共同构成一对互补介质。通过调整几何参数可以接近无穷大的增强因子总是比由相同尺寸的正折射率材料制成的传统浓缩器要高得多。应用声散射理论推导了集中器的压力场分布,这与数值全波模拟是一致的。在壳体的界面处固有的声阻抗匹配以及对于任意声线的“负折射-渐进曲率-负折射”的逆过程可以精确地消除集中器的散射。此外,聚光器外壳还可以用作声学球面放大镜,可产生具有相同形状的完美图像,并且较大的几何和声学参数位于偏移的位置。然后观察到一些声像反射,由此从位于中心区域的对象辐射(散射)的波似乎从其图像辐射(散射)。基于海市rage楼效应,我们进一步提出了一种有趣的声波转换器,该声波转换器可以通过任意的几何,声学和位置参数将一个对象的声音散射模式随意转换为另一个对象。

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