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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Unidirectional zero sonic reflection in passive PT-symmetric Willis media
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Unidirectional zero sonic reflection in passive PT-symmetric Willis media

机译:被动PT对称Willis介质中的单向零声波反射

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摘要

In an effective medium description of acoustic metamaterials, the Willis coupling plays the same role as the bianisotropy in electromagnetism. Willis media can be described by a constitutive matrix composed of the classical effective bulk modulus and density and additional cross-coupling terms defining the acoustic bianisotropy. Based on a unifying theoretical model, we unite the properties of acoustic Willis coupling with PT-symmetric systems under the same umbrella and show in either case that an exceptional point hosts a remarkably pronounced scattering asymmetry that is accompanied by one-way zero reflection for sound waves. The analytical treatment is backed up by experimental input in asymmetrically side-loaded waveguides showing how gauge transformations and loss biasing can embrace both Willis materials and non-Hermitian physics to tailor unidirectional reflectionless acoustics, which is appealing for purposeful sound insulation and steering.
机译:在声学超材料的有效介质描述中,威利斯耦合与电磁中的各向异性具有相同的作用。威利斯介质可以用本构矩阵来描述,本构矩阵由经典的有效体积模量和密度以及定义声学各向异性的附加交叉耦合项组成。在统一的理论模型的基础上,我们将声学威利斯耦合与PT对称系统的特性在同一伞下结合起来,并表明在两种情况下,例外点都具有明显的明显散射不对称性,并伴有声音的单向零反射波浪。分析处理得到非对称侧面加载波导中实验输入的支持,该实验显示量规转换和损耗偏向如何能够包含Willis材料和非Hermitian物理,以定制单向无反射声学,这对于有目的的隔音和操纵很有吸引力。

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