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Nearly octave bandwidth microwave absorber with resistance loaded metamaterial

机译:近倍频带宽微波吸收器,具有电阻负载超材料

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In this paper, we report a metamaterial absorber with nearly octave bandwidth in the microwave frequency. We employ resistance loaded resonance unit cells to reduce the quality factor of the resonance in the metamaterial and expand the absorption bandwidth. The proposed planar metamaterial absorber composes two slabs of print circuit board (PCB) bonded together. The upper one is a dielectric with copper film coated on both sides while the lower one is a single side grounded PCB substrate. The unit cell is composed of vertical metallic loop with serially loaded resistance element through conducting via holes. The optimal design demonstrated a broad microwave absorption with a nearly octave bandwidth from 8.45 GHz to 15.57 GHz for normal incidence in which the power absorption is over 90%. We have also fabricated prototype by PCB technique and characterized its performance through free space transmission measurement in an anechoic chamber. The measurements and simulations agree with each other quite well across the whole frequency range.
机译:在本文中,我们在微波频率下报告了具有近倍频带宽的超材料吸收器。我们采用阻力负载谐振单元电池,以减少超材料中共振的质量因子,并扩大吸收带宽。所提出的平面超材料吸收器组成两个粘合在一起的打印电路板(PCB)板。上一个是具有涂覆在两侧的铜膜的电介质,而下一个是单侧接地的PCB基板。单元电池由垂直金属环组成,通过通过孔通过串联负载电阻元件组成。最佳设计表明,具有从8.45GHz至15.57GHz的近倍频带宽的宽微波吸收,用于正常发射,其中功率吸收超过90%。我们还通过PCB技术制造了原型,并通过在一个AneChoic室中的自由空间传输测量来表征其性能。测量值和模拟在整个频率范围内相互作用。

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