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Resonant frequency and bandwidth of metamaterial emitters and absorbers predicted by an RLC circuit model

机译:RLC电路模型预测的超材料发射器和吸收器的谐振频率和带宽

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摘要

Metamaterial thermal emitters and absorbers have been widely studied for different geometric patterns by exciting a variety of electromagnetic resonances. A resistorinductor-capacitor (RLC) circuit model is developed to describe the magnetic resonances (i.e. magnetic polaritons) inside the structures. The RLC circuit model allows the prediction of not only the resonance frequency, but also the full width at half maximum and quality factor for various geometric patterns. The parameters predicted by the RLC model are compared with the finite-difference time-domain simulation. The magnetic field distribution and the power dissipation density profile are also used to justify the RLC circuit model. The geometric effects on the resonance characteristics are elucidated in the wire (or strip), cross, and square patterned metamaterial in the infrared region. This study will facilitate the design of metamaterial absorbers and emitters based on magnetic polaritons.
机译:通过激发各种电磁共振,已经针对不同的几何图案对超材料热辐射器和吸收器进行了广泛的研究。建立了电阻电感电容(RLC)电路模型来描述结构内部的磁共振(即磁极化子)。 RLC电路模型不仅可以预测共振频率,还可以预测半峰全宽和各种几何图案的品质因数。将RLC模型预测的参数与时域有限差分仿真进行比较。磁场分布和功率消耗密度分布图也可用于证明RLC电路模型的合理性。在红外区域的导线(或带),十字形和方形图案化的超材料中阐明了对共振特性的几何影响。这项研究将有助于基于磁极化子的超材料吸收体和发射体的设计。

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