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Bioinspired metagel with broadband tunable impedance matching

机译:BioinSpired Metagel与宽带可调阻抗匹配

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To maximize energy transmission from a source through a media, the concept of impedance matching has been established in electrical, acoustic, and optical engineering. However, existing design of acoustic impedance matching, which extends exactly by a quarter wavelength, sets a fundamental limit of narrowband transmission. Here, we report a previously unknown class of bioinspired metagel impedance transformers to overcome this limit. The transformer embeds a two-dimensional metamaterial matrix of steel cylinders into hydrogel. Using experimental data of the biosonar from the Indo-Pacific humpback dolphin, we demonstrate through theoretical analysis that broadband transmission is achieved when the bioinspired acoustic impedance function is introduced. Furthermore, we experimentally show that the metagel device offers efficient implementation in broadband underwater ultrasound detection with the benefit of being soft and tunable. The bioinspired two-dimensional metagel breaks the length-wavelength dependence, which paves a previously unexplored way for designing next-generation broadband impedance matching devices in diverse wave engineering.
机译:为了通过媒体从源极大化能量传输,在电气,声学和光学工程中建立了阻抗匹配的概念。然而,现有的声阻抗匹配设计,其完全由四分之一波长延伸,设定了窄带传输的基本极限。在这里,我们报告了一个先前未知的BioinSpired Metagel阻抗变压器以克服这一限制。变压器将钢瓶二维超材料矩阵嵌入到水凝胶中。使用来自印度太平洋驼背海豚的Biosonar的实验数据,我们通过理论分析证明,当介绍生物悬浮声阻抗功能时实现了宽带传输。此外,我们通过实验表明,Metagel器件在宽带水下超声波检测中提供了有效的实现,有益于柔软和可调。 BioInspired二维的Metagel打破了长度波长依赖性,该波长依赖性依赖于以前在不同波浪工程中设计下一代宽带阻抗匹配装置的先前未开发的方法。

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