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Multi-narrowband absorber based on subwavelength grating structure

机译:基于亚波长光栅结构的多窄带吸收器

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摘要

A near-infrared multi-narrowband absorber based on subwavelength metal-dielectric-metal grating structure was devised. The relationship between the parameters and the absorption performance was studied. By optimizing the geometrical parameters, a triple narrowband absorber with about 30-nm bandwidth was obtained. The electric and magnetic field distributions of the structure at the peak wavelength helped explain the nature of multi-narrowband absorption, which can be attributed to surface plasmon resonance and Fabry-Perot resonance. The thickness of dielectric layer determines the absorption bands of the structure mostly due to Fabry-Perot resonance. In addition, the absorber presents a satisfactory angular insensitive performance within 5° and can meet the demands for many applications.
机译:设计了一种基于亚波长金属-电介质-金属光栅结构的近红外多窄带吸收器。研究了参数与吸收性能之间的关系。通过优化几何参数,获得了带宽约为30 nm的三重窄带吸收器。该结构在峰值波长处的电场和磁场分布有助于解释多窄带吸收的性质,这可归因于表面等离子体激元共振和Fabry-Perot共振。介电层的厚度决定了结构的吸收带,这主要归因于法布里-珀罗共振。另外,该吸收器在5°内具有令人满意的角度不敏感性能,可以满足许多应用的需求。

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