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Recent Advances in Tunable and Reconfigurable Metamaterials

机译:可调谐和可重构超材料的最新进展

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摘要

Metamaterials are composed of nanostructures, called artificial atoms, which can give metamaterials extraordinary properties that cannot be found in natural materials. The nanostructures themselves and their arrangements determine the metamaterials’ properties. However, a conventional metamaterial has fixed properties in general, which limit their use. Thus, real-world applications of metamaterials require the development of tunability. This paper reviews studies that realized tunable and reconfigurable metamaterials that are categorized by the mechanisms that cause the change: inducing temperature changes, illuminating light, inducing mechanical deformation, and applying electromagnetic fields. We then provide the advantages and disadvantages of each mechanism and explain the results or effects of tuning. We also introduce studies that overcome the disadvantages or strengthen the advantages of each classified tunable metamaterial.
机译:超材料由称为人造原子的纳米结构组成,可以赋予超材料非凡的性能,这是天然材料所不具备的。纳米结构本身及其排列决定了超材料的特性。但是,常规的超材料通常具有固定的特性,这限制了它们的使用。因此,超材料在现实世界中的应用需要可调谐性的发展。本文回顾了实现可调谐和可重构超材料的研究,这些超材料按引起这种变化的机制分类:引起温度变化,照射光,引起机械变形以及施加电磁场。然后,我们提供每种机制的优缺点,并说明调整的结果或效果。我们还将介绍克服各种缺点或增强每种分类的可调超材料的优点的研究。

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