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All-metamaterial-based subwavelength cavities (λ/60) for ultrathin directive antennas

机译:超薄定向天线的基于全材料的亚波长腔(λ/ 60)

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In this letter, we present the characterization and modeling of a metamaterial-based resonant cavity for ultrathin directive printed antennas. A planar artificial magnetic conductor is used for the two reflectors of the Fabry-Perot-type resonant cavity. One reflector behaves as a high impedance surface, and serves as a substrate for the printed antenna. The other reflector is a partially reflective surface used as a transmitting window. The cavity is operated on subwavelength modes, the smallest cavity thickness being of the order of λ/60. A drastic enhancement of the antenna directivity and gain is obtained over a relatively wide band from 7.5 to 10.1 GHz, corresponding to a range of cavity thicknesses from ~λ/3 to ~λ/60. The cavity resonance is seen to be correctly predicted from the standard ray theory approach.
机译:在这封信中,我们介绍了用于超薄定向印刷天线的基于超材料的谐振腔的表征和建模。平面人造磁导体用于Fabry-Perot型谐振腔的两个反射器。一个反射器表现为高阻抗表面,并用作印刷天线的基板。另一个反射器是用作透射窗的部分反射表面。腔在亚波长模式下操作,最小腔厚度约为λ/ 60。天线指向性和增益在7.5至10.1 GHz的相对较宽的频带上得到了显着提高,对应的腔厚度范围为〜λ/ 3至〜λ/ 60。可以从标准射线理论方法正确预测腔共振。

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