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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Properties of Left-Handed Metamaterials: Transmission, Backward Phase, Negative Refraction, and Focusing
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Properties of Left-Handed Metamaterials: Transmission, Backward Phase, Negative Refraction, and Focusing

机译:左手超材料的特性:透射,后相,负折射和聚焦

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摘要

Four properties related to left-handed metamaterials are studied numerically: transmission within a stop-band, backward phase, negative refraction, and partial focusing. The unit cell of the metamaterial under study is composed of a rod and a ring originally proposed at infrared frequencies and redesigned here at microwave frequencies. We show that this ring, because of its symmetry, exhibits a better transmission in a parallel-plate waveguide than the original concentric split-ring resonator. Negative refraction is studied from a prism-shaped metamaterial, while all of the other properties are studied from a slab-shaped metamaterial. In particular, transmission and backward phase are studied on a slab where rings naturally couple with the incident wave, while partial focusing is studied on a slab of rings perpendicular to the direction of propagation. The numerical simulations are based on a two-dimensional periodic method of moments, whose Green's function is computed via Ewald's method, and a three-dimensional finite-difference time-domain technique.
机译:数值研究了与左手形超材料有关的四个属性:阻带内的透射,反向相位,负折射和局部聚焦。所研究的超材料的晶胞由最初在红外频率下提出并在此处以微波频率重新设计的棒和环组成。我们表明,由于其对称性,该环在平行板波导中比原始的同心开口环谐振器表现出更好的传输。负折射是从棱柱形的超材料中研究的,而所有其他特性都是从平板状的超材料中研究的。尤其是,在环形与入射波自然耦合的平板上研究了传输和反向相位,而在垂直于传播方向的环形平板上研究了部分聚焦。数值模拟是基于矩的二维周期性方法(其格林函数是通过Ewald方法计算的)和三维有限差分时域技术。

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