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Ultra-narrow band perfect metamaterial absorber based on dielectric-metal periodic configuration

机译:基于介电金属周期构型的超窄带完美超材料吸收体

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摘要

The ultra-narrow band perfect metamaterial absorber (PMA) based on dielectric-metal periodic configuration for near infrared spectral region is proposed. The PMA consists of a dielectric resonant structure and a metal substrate. Two design examples show that the proposed PMAs are able to exhibit nonpolarizing absorption peaks at normal and oblique incidences respectively. Moreover, the absorption spectra of the PMA for oblique incidence are insensitive to the incident angle under TE polarized light illumination. But this PMA exhibits a large spectral shift by rotating the angle of incidence under TM polarized light illumination. Then a PMA sample for oblique incidence is fabricated through thin-film deposition and electron beam lithography patterning. Finally, the reflection spectra of the fabricated PMA sample are measured. The absorption spectra obtained by subtracting the measured reflection spectra from incident spectra are consistent with the theory. Thus the novel characteristics of the ultra-narrow band PMA based on dielectric-metal periodic configuration are experimentally demonstrated.
机译:提出了一种基于介电金属周期构型的近红外光谱区超窄带完美超材料吸收器。 PMA由介电共振结构和金属基板组成。两个设计实例表明,所提出的PMA能够分别在垂直入射和倾斜入射时表现出非偏振吸收峰。而且,斜入射的PMA的吸收光谱对TE偏振光照射下的入射角不敏感。但是,该PMA通过在TM偏振光照射下旋转入射角而表现出较大的光谱偏移。然后,通过薄膜沉积和电子束光刻构图制造用于斜入射的PMA样品。最后,测量所制造的PMA样品的反射光谱。从入射光谱中减去测得的反射光谱得到的吸收光谱与理论相符。因此,实验证明了基于介电金属周期构型的超窄带PMA的新颖特性。

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