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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Negative refraction in quasicrystalline multilayered metamaterials
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Negative refraction in quasicrystalline multilayered metamaterials

机译:准晶体多层超材料的负折射

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Inspired by some recent results in elastodynamics of layered composites, we address here the problem of an antiplane elastic wave obliquely incident at the interface between a substrate and a periodic laminate with a quasicrystalline structure (generated by the Fibonacci substitution rule). The angles of refraction of the transmitted modes are computed by combining the transfer matrix method with the normal mode decomposition and evaluating the direction of the average Poynting vector. It is shown that, with respect to a periodic classical bilayer, on the one hand, beyond a certain frequency threshold, high order Fibonacci laminates can provide negative refraction for a wider range of angles of incidence, on the other, they allow negative wave refraction at lower frequencies. The outcome strongly relies on the Floquet-Bloch dynamic analysis of this class of laminates that is performed thoroughly. It is revealed that the corresponding spectra have a self-similar character linked to the specialisation of the Kohmoto's invariant, a function of the frequency that was recently studied by the authors for periodic one-dimensional quasicrystalline-generated waveguides. This function is able to explain two types of scaling occurring in dispersion diagrams. The attained results represent an important advancement towards the realisation of multilayered quasicrystalline metamaterials with the aim to control negatively refracted elastic waves. (C) 2018 Elsevier Ltd. All rights reserved.
机译:受层状复合材料弹性动力学的一些最新研究成果的启发,我们在这里解决了反平面弹性波倾斜入射在基底和具有准晶体结构的周期性叠层之间的界面(通过斐波纳契置换规则生成)的问题。通过将传递矩阵方法与法向模式分解相结合并评估平均Poynting矢量的方向,可以计算出透射模的折射角。结果表明,相对于周期性经典双层,一方面,超过某个频率阈值,高阶斐波那契层压材料可以为更大的入射角范围提供负折射,另一方面,它们允许负波折射。在较低的频率。结果很大程度上取决于对此类层压板进行的Floquet-Bloch动态分析,该分析必须进行彻底。结果表明,相应的光谱具有与Kohmoto不变式的特化有关的自相似特征,Kohmoto不变式是作者最近研究的用于周期性一维准晶体生成波导的频率的函数。此功能能够解释色散图中出现的两种缩放类型。获得的结果代表了实现多层准晶体超材料的重要进展,目的是控制负折射弹性波。 (C)2018 Elsevier Ltd.保留所有权利。

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