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A holey-structured metamaterial for acoustic deep-subwavelength imaging

机译:用于声深亚波长成像的多孔结构超材料

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摘要

For classical waves such as light or sound, diffraction sets a natural limit on how finely the details of an object can be recorded on its image. Recently, various optical superlenses based on the metamaterials concept have shown the possibility of overcoming the diffraction limit. Similar two-dimensional (2D) acoustic hyperlens designs have also been explored. Here we demonstrate a 3D holey-structured metamaterial that achieves acoustic imaging down to a feature size of λ/50. The evanescent field components of a subwavelength object are efficiently transmitted through the structure as a result of their strong coupling with Fabry-Pérot resonances inside the holey plate. This capability of acoustic imaging at a very deep-subwavelength scale may open the door for a broad range of applications, including medical ultrasonography, underwater sonar and ultrasonic non-destructive evaluation. © 2011 Macmillan Publishers Limited. All rights reserved.
机译:对于诸如光或声音之类的经典波,衍射为物体的细节可以在其图像上记录的精细程度设置了自然的限制。近来,基于超材料概念的各种光学超透镜已经显示出克服衍射极限的可能性。相似的二维(2D)声超透镜设计也已被探索。在这里,我们演示了一种3D多孔结构的超材料,该材料可实现低至λ/ 50的特征尺寸的声学成像。亚波长物体的逝场分量由于与多孔板内部的Fabry-Pérot共振强耦合而有效地通过结构传输。这种非常深的亚波长范围的声波成像能力可以为包括医学超声,水下声纳和超声无损评估在内的广泛应用打开大门。 ©2011 Macmillan Publishers Limited。版权所有。

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