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Sound Pressure Level Gain in an Acoustic Metamaterial Cavity

机译:声学超材料腔中的声压级增益

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摘要

The inherent attenuation of a homogeneous viscous medium limits radiation propagation, thereby restricting the use of many high-frequency acoustic devices to only short-range applications. Here, we design and experimentally demonstrate an acoustic metamaterial localization cavity which is used for sound pressure level (SPL) gain using double coiled up space like structures thereby increasing the range of detection. This unique behavior occurs within a subwavelength cavity that is 1/10th of the wavelength of the incident acoustic wave, which provides up to a 13 dB SPL gain. We show that the amplification results from the Fabry-Perot resonance of the cavity, which has a simultaneously high effective refractive index and effective impedance. We also experimentally verify the SPL amplification in an underwater environment at higher frequencies using a sample with an identical unit cell size. The versatile scalability of the design shows promising applications in many areas, especially in acoustic imaging and underwater communication.
机译:均质粘性介质的固有衰减限制了辐射的传播,从而将许多高频声学设备的使用限制为仅用于短距离应用。在这里,我们设计并通过实验证明了一种声学超材料定位腔,该腔用于使用类似结构的双盘绕空间来获得声压级(SPL)增益,从而增加了检测范围。这种独特的行为发生在入射声波波长的1/10 的亚波长腔内,提供高达13 dB的SPL增益。我们表明,放大的结果来自腔的Fabry-Perot共振,该共振同时具有较高的有效折射率和有效阻抗。我们还使用具有相同晶胞大小的样品,通过实验验证了水下环境中较高频率下的SPL放大。设计的通用可扩展性显示了在许多领域中的有希望的应用,特别是在声学成像和水下通信中。

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