A Novel Miniaturized Metamaterial Microwave Absorber with Quasi-full-angle Stability

Yudi Fan, Erping Li, Tianwu Li
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Abstract

A novel miniaturized metamaterial microwave absorber with quasi-full-angle stability is proposed in this paper, where the meander line and the strong coupling between the patches are applied to increase the angular stability and decrease the structure size. The results show that the absorption peaks are always maintained at 5.2 GHz for TE mode from 0° to 80°, and TM mode from 0° to 40°, while the absorption rate of more than 80% is maintained at 5.2 GHz for both TE and TM mode from 0° to 60°. The miniaturized structure is only 3 mm (about $0.06\lambda$) in size while only about $0.03\lambda$ in thickness. The proposed metamaterial microwave absorber can be widely applied to electromagnetic interference shielding especially in narrow space application.
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一种具有准全角稳定性的新型微型超材料微波吸收体
本文提出了一种具有准全角稳定性的新型微型超材料微波吸收器,利用弯曲线和贴片之间的强耦合提高了贴片的角稳定性,减小了结构尺寸。结果表明,TE模式在0°~ 80°范围内,TM模式在0°~ 40°范围内,吸收峰始终保持在5.2 GHz,而TE模式和TM模式在0°~ 60°范围内,吸收率均保持在5.2 GHz以上。小型化的结构尺寸只有3毫米(约0.06美元),厚度只有0.03美元。所提出的超材料微波吸收器可广泛应用于电磁干扰屏蔽,特别是在狭窄空间的应用。
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