College of Physics and Optoelectronics Engineering, Dalian University of Technology, Dalian, Liaoning, China 116024.
Appl Spectrosc. 2013 Jan;67(1):49-53. doi: 10.1366/12-06718.
Some unique optical properties of sub-wavelength nanometer-sized metallic grating are presented in this paper. We propose a model to predict and explain the transmission of transverse-magnetic polarized light through a metallic grating with no substrate in the visible and near-infrared region. The model is based on a theoretical combination of surface plasmon polariton resonance and Fabry-Perot (FP)-like resonance that was excited by the nano-slit located in the grating. The finite difference time domain method is employed for modeling and simulation, and the minimum and maximum characteristics are analyzed, which shows its extraordinary enhanced transmission that differs from the conventional micrometer-sized metallic grating. This model can also be used to optimize the structural parameters in the design of the sub-wavelength wire-grid polarizer.
本文介绍了亚波长纳米尺寸金属光栅的一些独特光学特性。我们提出了一个模型来预测和解释在可见光和近红外区域内没有基底的金属光栅中横向磁偏振光的透过率。该模型基于表面等离激元共振和由位于光栅中的纳米狭缝激发的 Fabry-Perot(FP)类似共振的理论组合。采用时域有限差分法进行建模和模拟,并分析了最小值和最大值特性,结果表明其具有不同于传统微米尺寸金属光栅的非凡增强传输特性。该模型还可用于优化亚波长线栅偏振器设计中的结构参数。