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Shear-mediated contributions to the effective properties of soft acoustic metamaterials including negative index

机译:剪切介导的对软声超材料的有效特性(包括负指数)的贡献

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摘要

Here we show that, for sub-wavelength particles in a fluid, viscous losses due to shear waves and their influence on neighbouring particles significantly modify the effective acoustic properties, and thereby the conditions at which negative acoustic refraction occurs. Building upon earlier single particle scattering work, we adopt a multiple scattering approach to derive the effective properties (density, bulk modulus, wavenumber). We show,through theoretical prediction, the implications for the design of “soft” (ultrasonic) metamaterials based on locally-resonant sub-wavelength porous rubber particles, through selection of particle size and concentration, and demonstrate tunability of the negative speed zones by modifying the viscosity of the suspending medium. For these lossy materials with complex effective properties, we confirm the use of phase angles to define the backward propagation condition in preference to “single-” and “double-negative” designations.
机译:在这里,我们表明,对于流体中的亚波长粒子,由于剪切波而产生的粘性损失及其对相邻粒子的影响会极大地改变有效的声学特性,从而改变发生负声折射的条件。在较早的单粒子散射工作的基础上,我们采用多重散射方法来得出有效特性(密度,体积模量,波数)。通过理论预测,我们通过选择粒径和浓度来展示基于局部共振亚波长多孔橡胶颗粒的“软”(超声)超材料的设计意义,并通过修改来展示负速度区的可调谐性悬浮介质的粘度。对于这些具有复杂有效特性的有损耗材料,我们确认使用相角来定义后向传播条件要优先于“单负”和“双负”名称。

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