首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Multiple-band light absorber via combining the fundamental mode and multiple splitting modes of the 3-order response of metamaterial resonator
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Multiple-band light absorber via combining the fundamental mode and multiple splitting modes of the 3-order response of metamaterial resonator

机译:多带光吸收器通过组合超大谐振器的三阶响应的基本模式和多分裂模式

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摘要

We present a rather simple metamaterial design consisted of only a rectangle-shape patch structure with a very small air strip on it to realize triple-band absorption at terahertz frequency. Results prove that three narrow-band absorption peaks are obtained at frequencies of 0.94 THz, 2.44 THz, and 2.85 THz, and the average absorption rates of the three peaks are 97.00%. The resonance at 0.94 THz is attributed to the fundamental mode (or 1-order) response of the metamaterial, while the last two modes are due to the two splitting modes of the 3-order response. The parameter changes of the small air strip in the rectangle-shape patch structure have large influence on the absorption performance of the metamaterial, in particular of the last two modes. Importantly, quad-band absorption can be obtained by introducing one more air strip in the rectangle-shape patch structure. It is found that the first resonance peak is derived from the 1-order response, whereas the last three modes stem from the three splitting modes of the 3-order response of the metamaterial. The combination of the 1-order resonance and multiple splitting modes of the 3-order response provides new design method to realize multiple-band light absorbers.
机译:我们展示了一个相当简单的超材料设计,仅包括一个矩形贴片结构,其上具有非常小的气条,以实现太赫兹频率的三带吸收。结果证明,在0.94星,2.44六六茨和2.85至Ztz的频率下获得三个窄带吸收峰,三个峰的平均吸收率为97.00%。 0.94 THz的共振归因于超材料的基本模式(或1阶)响应,而最后两种模式是由于3阶响应的两个分割模式。矩形贴片结构中小气条的参数变化对超石料的吸收性能影响大,特别是最后两种模式。重要的是,可以通过在矩形贴片结构中引入一个进一步的气条来获得四带吸收。结果发现,第一谐振峰来自1阶响应,而最后三种模式源于超材料的三阶响应的三个分裂模式。单阶谐振和三阶响应的多个分离模式的组合提供了新的设计方法来实现多带光吸收器。

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