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Broadening the absorption bandwidth of metamaterial absorbers by transverse magnetic harmonics of 210 mode

机译:通过210模横向谐波扩大超材料吸收体的吸收带宽

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By investigating a square-shaped metamaterial structure we discover that wave diffraction at diagonal corners of such a structure excites transverse magnetic harmonics of 210 mode (TM210 harmonics). Multi-layer overlapping and deliberately regulating period length between adjacent unit cells can significantly enhance TM210 harmonics, leading to a strong absorption waveband. On such a basis, a design strategy is proposed to achieve broadband, thin-thickness multi-layered metamaterial absorbers (MMAs). In this strategy big pyramidal arrays placed in the "white blanks" of a chessboard exhibit two isolated absorption bands due to their fundamental and TM210 harmonics, which are further connected by another absorption band from small pyramidal arrays in the "black blanks" of the chessboard. The as-designed MMA at a total thickness (h) of 4.36 mm shows an absorption of above 0.9 in the whole frequency range of 7-18 GHz, which is 38% broader with respect to previous design methods at the same h. This strategy provides an effective route to extend the absorption bandwidth of MMAs without increasing h.
机译:通过研究方形超材料结构,我们发现在这种结构的对角线处的波衍射会激发210模的横向磁谐波(TM210谐波)。相邻单位单元之间的多层重叠和有意调节的周期长度可以显着增强TM210谐波,从而产生强大的吸收波段。在此基础上,提出了一种实现宽带,薄型多层超材料吸收器(MMA)的设计策略。在此策略中,放置在棋盘“白色毛坯”中的大金字塔阵列由于其基波和TM210谐波而表现出两个隔离的吸收带,它们进一步与来自棋盘“黑坯”中小金字塔形阵列的另一个吸收带相连。 。如此设计的MMA的总厚度(h)为4.36 mm,在7-18 GHz的整个频率范围内吸收率均超过0.9,这比之前相同h时的设计方法要宽38%。该策略提供了一种有效的途径,可以在不增加h的情况下扩展MMA的吸收带宽。

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