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Controlled Defect Based Ultra Broadband Full-sized Metamaterial Absorber

机译:基于控制的超宽带全尺寸超材料吸收器

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Metamaterial full-sized absorber structures are numerically and experimentally investigated in GHz region and then examined in THz frequency. By manipulating monitoring the number and the position of the defect elements in conventional unit cells, the optimal integrative absorber structures are generated. The proposed structures provide an ultra-broadband absorbance in the operating frequency. The good agreement between simulation, measurement and theoretical analysis is observed with a 5 GHz-bandwidth corresponding to the absorption of 95%. In particular, we extrapolate the concept to THz region and demonstrate that, the method can be applied to increase the bandwidth of the metamaterial absorber to 5?THz, while maintaining the other characteristics. This structure can be applied to improve the performance of telecommunication systems such as micro-antenna, micro-electromagnetic transmitters and apply to imaging and sensing fields.
机译:在GHz地区的数值和实验研究超材料全尺寸吸收器结构,然后在THz频率中进行检查。通过操纵传统单元电池中的缺陷元件的数量和位置,产生最佳的整合吸收器结构。所提出的结构在工作频率下提供超宽带吸光度。使用对应于95%的吸收的5GHz带宽观察模拟,测量和理论分析之间的良好一致性。特别地,我们将该概念推断为THz区域,并证明,该方法可以应用于将超材料吸收器的带宽增加到5〜THz,同时保持其他特征。该结构可以应用于提高电信系统(如微型天线,微电磁发射器)的性能,并适用于成像和传感领域。

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