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Simulation and experimental studies of dielectric resonator arrays for designing metamaterials

机译:超材料设计介质谐振器阵列的仿真与实验研究

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Electromagnetic responses of linear arrays of cylindrical dielectric resonators, which are building blocks of metamaterials, are investigated by full-wave simulations and measurements in a standard waveguide in the microwave range. It is demonstrated that electromagnetic interaction between ceramic resonators fabricated of the material with the relative permittivity of ∼37 can cause the resonance mode splitting and the formation of the resonance band even at distances between resonators exceeding several resonator diameters/heights. Interaction-related effects are found to be sensitive to the geometry of interaction and, correspondingly, to 3D positioning of arrays with respect to incident wave setting. The observed effects should be accounted for at designing metamaterial structures.
机译:通过在微波范围内的标准波导中的全波模拟和测量来研究作为超材料的建筑物块的圆柱形介质谐振器的线性致响应的电磁响应。结果表明,由于~37的相对介电常数,由〜37的相对介电常数的材料制造的陶瓷谐振器之间的电磁相互作用也会导致谐振模式分裂和形成谐振带的形成,即使谐振器之间的距离超过几个谐振器直径/高度。发现与交互相关的效果对相互作用的几何形状敏感,并且相应地对阵列相对于入射波设置进行3D定位。观察到的效果应考虑在设计超材料结构时。

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