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Investigation of the Absorption of Two-Dimensional Periodic Structures on New Plasmon Materials

机译:新型等离子体材料对二维周期性结构的吸收研究

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the two-dimensional periodic lattices of plasmon strips on substrates, which contain dielectric and plasmon layers were investigated. The Galerkin method was used to solve the vector integro-differential diffraction equation on three-dimensional dielectric bodies. Based on the solution obtained, the electrodynamic model was developed and numerical calculations of the problem were performed. The investigation’s shown that at resonant frequencies of a surface plasmon-polariton in a wide frequency range, these structures are absorbers of almost 100% of the energy incident on them. In addition, using of non-metallic plasmon materials allows to obtain an absorber of the infrared range in a wide range of wavelengths.
机译:研究了包含介电层和等离激元层的衬底上等离激元带的二维周期性晶格。用Galerkin方法求解三维介电体上的矢量积分微分衍射方程。基于获得的解决方案,开发了电动模型并对该问题进行了数值计算。研究表明,在很宽的频率范围内,表面等离子激元的共振频率下,这些结构几乎吸收了入射到其上的能量的100%。另外,使用非金属等离子体激元材料允许获得在宽波长范围内的红外范围的吸收体。

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