Pang Yongqiang, Cheng Haifeng, Zhou Yongjiang, Li Zenggnag, Wang Jun
National Key Laboratory of Science and Technology on Advanced Ceramic Fibers and Composites, College of Aerospace and Materials Engineering, National University of Defense Technology, Changsha 410073, China.
Opt Express. 2012 May 21;20(11):12515-20. doi: 10.1364/OE.20.012515.
An ultrathin and simultaneously broadband high impedance surface absorber based on a metamaterial (MM) substrate is presented at microwave frequencies. The MM substrate is designed using metallic split ring resonators (SRRs) vertically embedded into a dielectric slab. Both the simulated and experimental results display two absorption peaks and an expanded absorption bandwidth of less than -10 dB compared to conventional ultrathin absorbers. By analyzing the field distributions and the substrate impedance characteristics, it is found that this feature is mainly related to the LC resonance of the substrate caused by the embedded SRRs. Our results demonstrate the great feasibility of broadening the absorption bandwidth of the ultrathin high impedance surface absorbers by the MMs incorporation.
本文提出了一种基于超材料(MM)衬底的超薄且同时具有宽带特性的微波频率高阻抗表面吸收器。该MM衬底通过垂直嵌入电介质平板中的金属裂环谐振器(SRR)进行设计。与传统超薄吸收器相比,模拟和实验结果均显示出两个吸收峰以及小于-10 dB的扩展吸收带宽。通过分析场分布和衬底阻抗特性,发现该特性主要与嵌入的SRR引起的衬底LC谐振有关。我们的结果证明了通过引入MM来拓宽超薄高阻抗表面吸收器吸收带宽的巨大可行性。