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Leaky Coplanar Waveguide Antenna with Tunable Beamwidth and Radiation Angle Using Composite Right/Left-handed Materials

机译:漏水共面波导天线具有可调谐波束宽度和辐射角度使用复合右/左手材料

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摘要

A new field of physics has appeared with the emergence of materials known as "Left handed materials" (LHM) or "metamaterials". These materials show very particular characteristics. Their index of refraction has a negative value, which results in the reversal of Snell's law. Whereas, in traditional material the Poynting vector S always forms a right-handed triplet with E and H (S = E∧H). In the left handed media, the Poynting vector S and the wave vector K are in opposite directions. Thus, the wave moves in the direction opposite to the direction of the energy flow: phase speed and group speed are anti-parallel. Therefore, a left-handed media is artificial and does not exist in nature. Indeed, when these materials are inserted into a guided wave device, one obtains the backward-wave effect. The goal of this work is to study more in details this physical phenomenon. To undertake this study, this paper presents also the design of a 10 GHz beam-scanning CPW-Antenna fabricated on metamaterial support.
机译:一种新的物理领域出现了称为“左手材料”(LHM)或“超材料”的材料的出现。这些材料表现出非常特别的特征。它们的折射率具有负值,导致斯内尔法律的逆转。然而,在传统材料中,Poynting载体S总是用E和H(s =e∧h)形成右手三联体。在左手介质中,Poynting载体S和波矢量k处于相反的方向。因此,波在与能量流的方向相反的方向上移动:相速度和组速度是反平行的。因此,左手介质是人为的,并且本质上不存在。实际上,当将这些材料插入到导向波装置中时,获得后向波效应。这项工作的目标是在细节中学习这种物理现象。为进行这项研究,本文还提出了在超材料支架上制造的10 GHz光束扫描CPW-天线的设计。

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