材料科学
表面等离子体子
等离子体子
纳米结构
光电子学
薄脆饼
表面等离子体激元
电介质
电场
电子束光刻
光学
激发
局域表面等离子体子
纳米技术
抵抗
图层(电子)
工程类
物理
电气工程
量子力学
作者
Ying Yuan,Haiwei Wang,Changsheng Xie,Huabao Long,Runhan Liu,Peng Sha,Dong Wei,Xinyu Zhang
摘要
The intense surface plasmons (SPs) can be generated by patterned metal nano-structure arrays, through coupling incident light onto the functioned metal surface, so as to construct highly constrained surface electromagnetic modes. Therefore, a localized micro-nano-field array with a highly compressed surface electron distribution, can also be shaped and even nano-focused over the surface, which will lead to a lot of special physical effects such as anti-reflection effect, and thus indicate many new potential applications in the field of nano-photonics and -optoelectronics. In this paper, several typical patterned sub-wavelength metal nano-structure arrays were designed according to the process, in which common silicon wafer was employed as the substrate material and aluminum as the metal film with different structural size and arrangement circle. In addition, by adjusting the dielectric constant of metal material appropriately, the power control effect on metallic nanostructure was simulated. The key properties such as the excitation intensity of the surface plasmons were studied by simulating the reflectivity characteristic curves and the electric field distribution of the nanostructure excited by incident infrared beams. It is found that the angle of corners, the arrangement cycle and the metal material properties of the patterned nano-structures can be utilized as key factors to control the excitation intensity of surface plasmons.
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