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Anomalous energy transport in laminates with exceptional points

机译:具有异常点的层压板中的异常能量传输

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Recent interest in metamaterials has led to a renewed study of wave mechanics in the different branches of physics. Elastodynamics involves a special intricacy, owing to the coupling between the volumetric and shear parts of the elastic waves. Through a study of in-plane waves traversing periodic laminates, we here show that this coupling can result with unusual energy transport. We find that the corresponding frequency spectrum contains modes which simultaneously attenuate and propagate, and demonstrate that these modes coalesce to purely propagating modes at exceptional points in the spectrum. These non-Hermitian degeneracies with propagating modes, which to date were realized by balancing energy gain and loss in systems with parity-time symmetry, are reported here in a purely elastic setting. We show that the laminate exhibits metamaterial features near these points, such as negative refraction, and beam steering and splitting. While negative refraction in laminates has been demonstrated before by considering pure shear waves impinging on an interface with multiple layers, here we realize it for coupled waves impinging on a simple single-layer interface. This feature, together with the appearance of exceptional points, are absent from the model problem of anti-plane shear waves which have no volumetric part, and hence from the mathematically identical electromagnetic waves in materials with positive refractive index. Thereby, our work paves the way for future applications such as asymmetric mode switches using a tangible elastic apparatus. (C) 2019 Elsevier Ltd. All rights reserved.
机译:最近对超材料的兴趣导致对物理学不同学科中的波浪力学的重新研究。由于弹性波的体积部分和剪切部分之间的耦合,弹性动力学具有特殊的复杂性。通过研究横穿周期性层压板的面内波,我们在此表明​​这种耦合可能导致异常的能量传输。我们发现相应的频谱包含同时衰减和传播的模式,并证明这些模式在频谱中的异常点合并为纯传播模式。这些具有传播模式的非Hermitian简并性,到目前为止,是通过平衡具有奇偶时间对称性的系统中的能量获取和损失来实现的,在这里以纯弹性形式进行了报道。我们表明,层压板在这些点附近表现出超材料特性,例如负折射,光束控制和分裂。虽然之前已经通过考虑撞击在多层界面上的纯剪切波来证明层压板的负折射,但在这里我们认识到它是撞击在简单单层界面上的耦合波。该特征以及异常点的出现是没有体积部分的反平面剪切波的模型问题所缺少的,因此在具有正折射率的材料中数学上相同的电磁波是没有的。因此,我们的工作为将来的应用铺平了道路,例如使用有形弹性设备的非对称模式开关。 (C)2019 Elsevier Ltd.保留所有权利。

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