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An effective approach to expand the bandwidth of negative permeability of small-sized planar materials is proposed. Based on qualitative analysis of equivalent circuit models, the fractional bandwidth of an μ-negative (MNG) material is expanded from 3.53% up to 12.87% by adding split-ring resonators (SRRs) and arranging them by proposed steps. Moreover, the experimental results validate the effectiveness of bandwidth-expanding methods, which is promising for the extensive application of metamaterials in the microwave field. 相似文献
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时间反演电磁学是一门新兴学科. 高效的电磁时间反演信号获取方式是时间反演技术获得应用的关键. 本文研究了一种基于时域成像原理获得时间反演微波信号的方法. 首先根据时间透镜原理, 推导出了实现波形时间反演的条件, 并对波形反演的过程进行了数值仿真. 然后设计了两种满足反演条件的啁啾电磁带隙结构来构造色散信道, 并通过实验得到了一个时隙长度为1.5 ns的时间反演信号. 由于啁啾电磁带隙结构与理想色散信道的差异, 实验结果中存在波形失真. 文章最后对造成失真的原因进行了分析. 相似文献
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