Analytical model for coupling of waves between a homogeneous medium and a volumetric transmission-line network

C. Valagiannopoulos, P. Alitalo, S. Tretyakov
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引用次数: 4

Abstract

The use of transmission-line networks as periodic structures emulating many interesting metamaterial-related phenomena, such as negative refraction ([1], [2]) and cloaking ([3], [4]), has gained increasing interest in the scientific community. Transmission-line networks offer a simple way to create non-resonant, broadband structures exhibiting exotic wave propagation characteristics. A big drawback of traditional transmission-line metamaterials is the fact that most such structures are not inherently coupled with electromagnetic waves propagating in a homogeneous material, such as free space for example. Recently various approaches to couple transmission-line networks to free space have been proposed, see, e.g., [3], [4], [5]. The approach of [3], [4], is based on matching the free space wave to a network by introducing a special transition layer which couples the different modes propagating in the two different “media”. Such a layer can be formed simply by creating metal tapers, which guide the wave with very small amount of reflections from one media to another [3]. This technique has been successfully employed to create an electromagnetic cloaking device based on transmission-line networks [4].
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均匀介质与体积在线传输网之间波耦合的解析模型
利用传输在线网络作为周期结构模拟许多有趣的超材料相关现象,如负折射([1],[2])和隐身([3],[4]),已经在科学界引起了越来越多的兴趣。传输在线网络提供了一种简单的方法来创建非谐振的宽带结构,并表现出奇异的波传播特性。传统的传输在线超材料的一大缺点是,大多数这种结构与在均匀材料(例如自由空间)中传播的电磁波没有内在的耦合。最近提出了各种将传输在线网络耦合到自由空间的方法,例如,[3],[4],[5]。[3],[4]的方法是通过引入一个特殊的过渡层来将自由空间波与网络相匹配,该过渡层将在两种不同的“媒体”中传播的不同模式耦合起来。这样的一层可以简单地通过制造金属锥来形成,这种金属锥引导波以极少量的反射从一种介质到另一种介质。该技术已成功应用于基于传输在线网络[4]的电磁隐身装置。
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