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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Design and analysis of nanostructured subwavelength metamaterial absorber operating in the UV and visible spectral range
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Design and analysis of nanostructured subwavelength metamaterial absorber operating in the UV and visible spectral range

机译:在紫外和可见光谱范围内工作的纳米结构亚波长超材料吸收体的设计和分析

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The design of broadband metamaterial perfect absorber (MPA) is proposed that operates in the ultraviolet and the visible regions of the electromagnetic spectrum. The MPA structure is of nanoscale in size and comprised of three layers - the U-shaped resonators (made of gold) of subwavelength size are embedded over a nanolayer of dielectric medium (silica glass), which is backed by a copper nanolayer surface. It is found that the proposed structure yields absorption peaks with the absorptivity over 99% in the aforesaid spectral range corresponding to both the transverse electric and the transverse magnetic polarizations of the incident electromagnetic wave. Furthermore, the angular dependence (of the incident light) of absorption characteristics is also analyzed along with the behavior of the absorber under varying thickness of nanosized resonators. It is expected that the proposed kind of perfect absorber would be highly useful in integrated heat-absorbing mediums that would include sensors, integrated photodetectors, thermal imaging, solar cells, etc.
机译:提出了在电磁光谱的紫外线和可见光区域工作的宽带超材料完美吸收体(MPA)的设计。 MPA结构的尺寸为纳米级,由三层组成-亚波长尺寸的U形谐振器(由金制成)嵌入介电介质(石英玻璃)的纳米层上,该介质层由铜纳米层表面支撑。已经发现,所提出的结构在对应于入射电磁波的横向电极化和横向磁极化的上述光谱范围内产生吸收率超过99%的吸收峰。此外,还分析了吸收特性(入射光)的角度依赖性以及吸收剂在纳米厚度谐振器厚度变化时的行为。预计拟议的完美吸收体将在集成的吸热介质中非常有用,集成的吸热介质包括传感器,集成的光电探测器,热成像,太阳能电池等。

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