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Acoustic field enhancement and subwavelength imaging by coupling to slab waveguide modes

机译:通过耦合到平板波导模式来增强声场和亚波长成像

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摘要

We present a theoretical study on the amplification of evanescent sound waves produced by coupling to trapped modes hosted by a fluidic planar waveguide. Total internal reflection at interfaces of different refractive indexes can be frustrated by the introduction of a slow slab waveguide which is leading to a gigantic field enhancement, useful for sensitive transducers and acoustic shock lithotripsy. The mechanism behind the evanescent field coupling that is also known as tunnelling barrier penetration in quantum mechanics is here adopted for its use in an acoustic superlens. The higher spatial harmonics produced by a subwavelength object can couple to trapped modes of the slow waveguide and be reproduced as an image at a distant plane. We suggest a practical implementation of these ideas by means of a silicone rubber slab containing positive acoustic wave propagation parameters. © 2010 American Institute of Physics.
机译:我们目前对e逝声波的放大进行理论研究,该e逝声波是通过耦合到由流体平面波导托管的陷波模式而产生的。通过引入缓慢的平板波导可以使不同折射率的界面处的全内反射受阻,这将导致巨大的场增强,可用于敏感的换能器和声震碎石术。 adopted逝场耦合背后的机制(在量子力学中也称为隧道势垒穿透)在这里被采用,用于声超透镜。亚波长物体产生的较高的空间谐波可以耦合到慢波波导的陷波模式,并在远处作为图像重现。我们建议通过包含正声波传播参数的硅橡胶平板实际实施这些想法。 ©2010美国物理研究所。

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