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Manipulating Acoustic Wavefront by Inhomogeneous Impedance and Steerable Extraordinary Reflection

机译:通过非均匀阻抗和可控超常反射来操纵声波前

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We unveil the connection between the acoustic impedance along a flat surface and the reflected acoustic wavefront, in order to empower a wide wariety of novel applications in acoustic community. Our designed flat surface can generate double reflections: the ordinary reflection and the extraordinary one whose wavefront is manipulated by the proposed impedance-governed generalized Snell's law of reflection (IGSL). IGSL is based on Green's function and integral equation, instead of Fermat's principle for optical wavefront manipulation. Remarkably, via the adjustment of the designed specific acoustic impedance, extraordinary reflection can be steered for unprecedented acoustic wavefront while that ordinary reflection can be surprisingly switched on or off. The realization of the complex discontinuity of the impedance surface has been proposed using Helmholtz resonators.
机译:我们公开了沿平坦表面的声阻抗与反射的声波阵面之间的联系,以增强声学社区中新颖应用的广泛警惕。我们设计的平面可以产生双重反射:普通反射和非寻常反射,其波前由拟议的阻抗控制广义斯涅尔反射定律(IGSL)操纵。 IGSL基于格林函数和积分方程,而不是费马光学波前操纵原理。值得注意的是,通过调整设计的比声阻抗,可以控制超常反射以实现前所未有的声波前,而普通反射可以令人惊讶地打开或关闭。已经使用亥姆霍兹谐振器提出了阻抗表面的复杂不连续性的实现。

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