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Mapping directivity of coupled dimers of meta-atoms

机译:耦合的亚原子二聚体的映射方向性

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Arrays of coupled split ring resonators (SRRs) capable of carrying slow short-wavelength magneto-inductive waves have been shown to support the rapidly varying current distributions required for superdirectivity. However, the superposition of both electric and magnetic dipole resonance modes contributing to radiation of SRRs challenge pure physical intuition in the selection of the optimal dimer configuration reaching the maximum theoretical value of superdirectivity. In this paper a comprehensive analytical model for characterizing the radiation of dimers of coupled meta-atoms with only one element being driven is presented. The model leverage an equivalent circuit description of the coupled resonators in combination with standard radiation formulas. Based on this model, maps of directivity are produced for any orientations of two co-planar split rings resonant at about 2 GHz, leading to identifying the conditions for superdirectivity in terms of orientation and possibly size of the meta-atoms.
机译:已经显示出能够承载缓慢的短波长磁感应波的耦合裂环谐振器(SRR)阵列可支持超方向性所需的快速变化的电流分布。但是,有助于SRR辐射的电偶极子共振模式和磁偶极子共振模式的叠加,在选择达到超指导性最大理论值的最佳二聚体构型时,挑战了纯粹的物理直觉。在本文中,提出了一种综合分析模型,用于表征仅驱动一个元素的耦合的亚原子二聚体的辐射。该模型结合标准辐射公式,充分利用了耦合谐振器的等效电路描述。基于该模型,针对在大约2 GHz处共振的两个共面裂环的任何方向生成了方向图,从而根据方向以及可能的亚原子尺寸确定了超方向性的条件。

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