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Spatial Beam Splitter Design Using Fishnet-type Periodic Structure

机译:渔网式周期结构的空间分束器设计

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In this paper, we present a metamaterial-based beam splitter. Such a power splitter was made up of a metamaterial sandwiched by two metallic plates. The metamaterial consists of three-dimensional (3D) fishnet arranged in a two-dimensional square lattice. As is well known from Snell's law, the refracted wave tends to be normal to the interface when the wave is incident from a medium having effective refractive index much smaller than unity into the air region. We properly synthesize the metamaterial having effective refractive index smaller than unity. Furthermore, a line source made by a monopole was embedded in the metamaterial to excite four beams propagating toward four directions. In addition to the calculation of wave-propagating characteristics in the metamaterial, we also implemented a beam-splitting structure invoking the unique characteristic of the metamaterial. The electric-field radiating pattern was measured to prove its spatially beam-splitting characteristics. Metamaterial is an artificially engineered structure which obtains its properties from its structure rather than directly from its composition. Generally, a metamaterial is synthesized by embedding specific inclusions, for example, periodic structures, in a host medium. The applications of metamaterial in waveguides and antennas designed were intensively developed [1,2]. A metamaterial with zero-index was demonstrated to have the capability to narrow the far-field pattern associated with an antenna located within it. Besides, a matched zero-index slab could be used to transform curved wave fronts into planar ones [3]. The metamaterial made up of wire medium has been studied intensively, particularly on its effective refractive index, permittivity and permeability. Specifically, the structure composed of metallic mesh wires, which has very small electrical length in the period and wire thickness, can be characterized as a homogeneous medium with a low plasma frequency [4].
机译:在本文中,我们提出了一种基于超材料的分束器。这种功率分配器是由一种超材料制成的,该超材料被两个金属板夹在中间。超材料由排列在二维方格中的三维(3D)渔网组成。从斯涅尔定律众所周知,当折射波从有效折射率远小于一的介质入射到空气区域时,折射波倾向于垂直于界面。我们适当地合成了具有小于一的有效折射率的超材料。此外,将单极制成的线源嵌入超材料中,以激发向四个方向传播的四个光束。除了计算超材料中的波传播特性外,我们还实现了一种分光结构,该结构利用了超材料的独特特性。测量电场辐射图以证明其空间分束特性。超材料是一种人工设计的结构,可以从其结构中获得其特性,而不是直接从其组成中获得其特性。通常,超材料是通过将特定的内含物(例如周期性结构)嵌入宿主介质中来合成的。专门开发了超材料在设计的波导和天线中的应用[1,2]。具有零折射率的超材料被证明具有缩小与位于其中的天线相关联的远场方向图的能力。此外,可以使用匹配的零折射率平板将弯曲的波前转换为平面的波前[3]。由线介质构成的超材料已被深入研究,特别是在其有效折射率,介电常数和磁导率方面。具体而言,由金属网线组成的结构在周期和线厚度上具有非常小的电长度,可以被表征为等离子频率低的均质介质[4]。

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