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Dual-Band Perfect Metamaterial Absorber Based on an Asymmetric H-Shaped Structure for Terahertz Waves

机译:基于非对称H形结构的太赫兹波双频完美超材料吸收体

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摘要

We designed an ultra-thin dual-band metamaterial absorber by adjusting the side strips’ length of an H-shaped unit cell in the opposite direction to break the structural symmetry. The dual absorption peaks approximately 99.95% and 99.91% near the central resonance frequency of 4.72 THz and 5.0 THz were obtained, respectively. Meanwhile, a plasmon-induced transmission (PIT) like reflection window appears between the two absorption frequencies. In addition to theoretical explanations qualitatively, a multi-reflection interference theory is also investigated to prove the simulation results quantitatively. This work provides a way to obtain perfect dual-band absorption through an asymmetric metamaterial structure, and it may achieve potential applications in a variety of fields including filters, sensors, and some other functional metamaterial devices.
机译:我们通过在相反方向上调整H形单元电池的侧条长度来打破结构对称性,从而设计了一种超薄双带超材料吸收体。在4.72 THz和5.0 THz的中心共振频率附近分别获得了大约99.95%和99.91%的双吸收峰。同时,在两个吸收频率之间出现了等离激元诱导的透射(PIT)反射窗口。除了定性的理论解释外,还研究了多反射干涉理论以定量地证明仿真结果。这项工作提供了一种通过不对称超材料结构获得完美双波段吸收的方法,并且它可能在包括过滤器,传感器和某些其他功能性超材料设备在内的各种领域中实现潜在的应用。

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