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Design and measurement of broadband magnetic composite metamaterial absorber with C-band absorption

机译:C波段吸收的宽带磁性复合超材料吸收器的设计与测量

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We present the design and measurement of broadband magnetic composite metamaterial absorber with C-Band absorbing effect. The absorber embeds the periodic array of concentric semicircular copper sheet in the FeSiAlp/epoxy composite material layer. The wave-absorbing properties of the FeSiAlp/epoxy resin composite is greatly improved compared with the simple FR4 matrix material, bandwidth with reflectance less than ?10?dB increases from 0?GHz to 8.13?GHz. Simultaneously, due to the introduction of the frequency selective surface (FSS) structure, the absorber performance of the absorber is also improved in C-band. The peak of the absorber appears at 7.46?GHz, and the reflectivity reaches ?12.78?dB, and the absorption reaches 94.72%. After optimizing the dimensions of FSS, The FeSiAlp/epoxy resin composite absorber with a thickness of 2.6?mm reached peak simultaneously at 7.46?GHz and 16.64?GHz, and peak reflectance reach ?12.78?dB and ?18.21?dB, respectively, and corresponding absorption reached 95.68% and 99.70%, respectively. Bandwidths with reflectivity less than ?10?dB reaches 8.13?GHz, the absorber has obvious absorption effect in C-band. The experiment basically verified the simulation results. Hence, the absorber with special structure design not only overcomes the problem of narrow absorption band of metamaterials, but also solves the shortcoming of weak C-band absorption effect of magnetic material absorber.
机译:我们介绍了具有C波段吸收效果的宽带磁性复合超材料吸收器的设计和测量。吸收剂在FeSialp /环氧复合材料层中嵌入同心半圆形铜板的周期性阵列。与简单的FR4基质材料相比,FeSialp /环氧树脂复合材料的波浪吸收性能大大提高,反射率小于Δ10≤10≤10Ω的带宽增加到8.13μl≤GHz。同时,由于引入频率选择表面(FSS)结构,在C波段中也改善了吸收器的吸收性能。吸收器的峰值出现在7.46?GHz,反射率达到12.78?DB,吸收达到94.72%。在优化FSS的尺寸之后,厚度为2.6Ωmm的FeSialp /环氧树脂复合吸收器在7.46μm≤jhz和16.64μm≤jhz,峰值反射率分别达到峰值,分别为12.78?db和?18.21?db,以及相应的吸收分别达到95.68%和99.70%。反射率的带宽小于?10?DB达到8.13?GHz,吸收器具有明显的C波段吸收效应。该实验基本上验证了模拟结果。因此,具有特殊结构设计的吸收器不仅克服了超材料的窄吸收带的问题,而且还解决了磁性材料吸收剂的弱C波段吸收效应的缺点。

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