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Resonant crystal band gap metamaterials in the microwave regime and their exotic amplification of evanescent waves

机译:微波中的共振晶体带隙超材料及其van逝波的奇异放大

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The authors realize resonant crystal band gap metamaterials (CBMs) using circuit structures in the microwave regime, which behave quite differently from the conventional photonic band gap structures. They show that a periodic array of series inductor and shunt capacitor is equivalent to a CBM similar to a magnetic plasma at higher frequency band, and a periodic array of series capacitor and shunt inductor behaves like a CBM similar to an electric plasma at lower frequency band. The equivalent medium parameters have been derived in both cases, which show the existence of conjugate loss in imaginary parts. When two such structures are cascaded together, the authors demonstrate that evanescent waves are amplified and transmitted in a very narrow frequency band under the antimatching condition. Such a feature can be used to design extremely narrow band filters. Theoretical predictions, circuit simulations, and experimental results are presented to validate their conclusions.
机译:作者利用微波状态下的电路结构实现了谐振晶体带隙超材料(CBM),其行为与传统的光子带隙结构完全不同。他们表明,串联电感器和并联电容器的周期性阵列等效于在较高频带下类似于电磁等离子体的CBM,而串联电容器和并联电感器的周期性阵列的行为类似于在较低频带上类似于电等离子体的CBM。 。在两种情况下都得出了等效的介质参数,这表明在虚部存在共轭损失。当两个这样的结构级联在一起时,作者证明了e逝波在反匹配条件下被放大并在非常窄的频带中传输。这种功能可用于设计极窄带滤波器。提出了理论预测,电路仿真和实验结果以验证其结论。

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