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Next-generation metamaterials for unprecedented microwave systems

机译:前所未有的微波系统的下一代超材料

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This paper presents what, in the vision of the author, will be next-generation metamaterials for microwave systems. For this purpose, it first introduces some fundamentals on metamaterials and describes the different types of currently existing metamaterial structures, called micro-scale metamate-rials, in reference with their typical smallest dimension. Upon this basis, it presents a few micro-scale metamaterial properties, structures and principles, from the popular negative index of refraction, via various dispersion-engineered devices, to a very recent non-reciprocal magnet-less metamaterial. After pointing out the limitations of micro-scale metamaterial, the paper introduces next generation metamaterials, namely multi-scale metamaterials, which incorporate nano-scale and atomic-scale structures and substances. For the nano-scales, it presents the example of ferromagnetic nanowire metamaterials and their applications, while for the atomic scale it describes recent innovations in ferrite based structures, including a uniform waveguide CRLH leaky-wave antenna and a perfect electromagnetic conductor wall, as well as most recent graphene-based structures and devices. Finally, a tri-scale structure, incorporating a graphene atomic-scale, ferromagnetic wire nano-scale and a metasurface micro-scale is discussed. In conclusion, the paper suggests that, although technology is eminently unpredictable, the wealth of novel properties of metamaterials augurs a long and lasting impact of this area.
机译:本文介绍了作者愿景,将是微波系统的下一代超材料。为此目的,它首先在超材料上介绍了一些基本面,并描述了当前现有的超材料结构,称为微级别标准物,参考其典型的最小尺寸。在此基础上,通过各种分散工程装置,从流行的负折射率,从流行的负折射率,通过各种分散工程装置呈现几种微量的超级材料性质,结构和原理。较近期的非互易磁体的超材料。在指出微尺度超材料的局限性之后,本文介绍了下一代超材料,即多尺度超材料,其包含纳米级和原子尺度结构和物质。对于纳米鳞片,它呈现了铁磁性纳米线超材料及其应用的例子,而对于原子尺度,它描述了最近的基于铁氧体的结构,包括均匀的波导CRLH泄漏波天线和完美的电磁导体壁,以及完美的电磁导体壁。作为最近的基于石墨烯的结构和器件。最后,讨论了具有石墨烯原子尺度,铁磁线纳米级和元表面微级的三级结构。总之,本文表明,虽然技术是难以预测的,但超材料的丰富性质试图对该领域的长期持久的影响。

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