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Electromagnetic Wave Absorbing Material Based on Magnetic Microwires

机译:基于磁性微丝的电磁波吸收材料

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In this paper, we present an experimental investigation related to an electromagnetic radiation absorber for a preselected frequency range between 5 and 20 Ghz. It consists in an absorbent sheet located such that, in the absorber use position, said electromagnetic radiation falls on the absorbent sheet. The absorbent sheet is made up of a dielectric material containing amorphous magnetic microwires of which magnetic permeability in the preselected frequency range has an imaginary part $mu''$ which is at least 100 times greater than that of the corresponding real part $mu'$. The small wire diameter, compared to the skin depth, guarantees the full penetration of the electromagnetic fields inside the microwires. In order to elucidate the contribution of electrical resonance to the absorption, absorbent sheets of dielectric material containing copper microwires have been also characterized at high frequency.
机译:在本文中,我们提出了一项与电磁辐射吸收器有关的实验研究,该电磁辐射吸收器用于5至20 GHz的预选频率范围。它包括吸收片,该吸收片被定位成使得在吸收器使用位置中,所述电磁辐射落在吸收片上。吸收片由包含非晶磁性微线的介电材料制成,其在预选频率范围内的磁导率具有虚部$ mu''$,该虚部至少是对应的实部$ mu'$的100倍。 。与趋肤深度相比,较小的线径可确保微线内部的电磁场完全穿透。为了阐明谐振对吸收的贡献,还已经高频表征了包含铜微线的介电材料的吸收片。

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