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Three-dimensional isotropic metamaterial consisting of domain-structure

机译:由域结构组成的三维各向同性超材料

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摘要

Whether an artificially designed negative-index structure could be regarded as a homogeneous medium or not rests with the ratio of its structural unit (man-made atom) over the operation wavelength. However, this definition is ambiguous, and usually the ratio is too large to rigorously meet the effective medium theory. In this paper a three-dimensional (3D) isotropic structure is presented which is obtained from a two-dimensional (2D) isotropic structure rotating on its axis for a circle, and the material is silver. Numerical studies confirm that both the 2D and 3D structures can realize a negative refractive index at microwave wavelengths. Observing the monitored surface current distributions and analogizing the molecular current and the magnetic domain, we suggest a new concept of domain-structure to explain the interior structure of this metamaterial, and finally conclude that the 3D structure is a kind of domain-structured and isotropic metamaterial.
机译:人工设计的负折射率结构是否可被视为均匀介质,取决于其结构单元(人造原子)在工作波长上的比率。但是,这个定义是模棱两可的,通常比率太大而无法严格满足有效介质理论。在本文中,提出了一种三维(3D)各向同性结构,该结构是从绕其轴旋转一个圆的二维(2D)各向同性结构获得的,并且材料为银。数值研究证实2D和3D结构都可以在微波波长下实现负折射率。通过观察监测的表面电流分布并模拟分子电流和磁畴,我们提出了一种新的畴结构概念来解释这种超材料的内部结构,并最终得出结论,3D结构是一种畴结构且各向同性超材料。

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