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Design of Metamaterial Absorber using Eight-Resistive-Arm Cell for Simultaneous Broadband and Wide-Incidence-Angle Absorption

机译:八电阻臂单元同时宽带和宽入射角吸收的超材料吸收体设计

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摘要

In this paper, a broadband metamaterial (MM) absorber is presented for X-band applications. A novel eight-resistive-arm (ERA) cell is proposed as an MM unit cell to achieve both broadband absorption and wide incidence angles. The proposed ERA cell is designed using equivalent circuit model and full-wave analysis in order to achieve an absorption ratio higher than 90% in the range of 8.2–13.4 GHz. The experimental results indicate that the absorptivity was greater than 90% in the range of 8–13 GHz for all polarization angles under normal incidence. Under oblique incidence, the measured absorptivity was greater than 90% in the range of 8.2–12.2 GHz up to 60° and in the range of 9.2–12 GHz up to 65° in the transverse electric (TE) mode. In the transverse magnetic (TM) mode, the measured absorptivity was higher than 90% in the range of 9.5–12.4 GHz when the incidence angle was varied from 0° to 60° and remaining a 90% absorption bandwidth in the range of 10–12 GHz up to 65°. Compared to other broadband MM absorbers, the proposed MM absorber exhibited the widest incidence angles in both TE and TM modes.
机译:在本文中,提出了一种用于X波段应用的宽带超材料(MM)吸收器。提出了一种新颖的八阻臂(ERA)电池作为MM晶胞,以实现宽带吸收和宽入射角。拟议的ERA单元采用等效电路模型和全波分析设计,以在8.2–13.4 rangeGHz范围内实现高于90%的吸收率。实验结果表明,在垂直入射条件下,所有极化角在8-13 GHz范围内的吸收率均大于90%。在斜入射下,在横向电(TE)模式下,在8.2–12.2 GHz至60°的范围内以及在9.2–12 GHz至65°的范围内,测得的吸收率均大于90%。在横向磁(TM)模式下,当入射角从0°变为60°时,在9.5-12.4 GHz范围内测得的吸收率高于90%,并且在10-°范围内仍保持90%的吸收带宽12 GHz至65°。与其他宽带MM吸收器相比,所提出的MM吸收器在TE和TM模式下均表现出最宽的入射角。

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