Yuan Haiming, Jiang Xiangqian, Huang Feng, Sun Xiudong
Department of Physics, Harbin Institute of Technology, Harbin 150001, China.
Key Lab of Micro-Optics and Photonic Technology of Heilongjiang Province, Harbin 150001, China.
Sci Rep. 2016 Aug 5;6:30818. doi: 10.1038/srep30818.
We numerically study the multiple excitation of surface modes in 2D photonic quasicrystal/metal/substrate structure. An improved rigorous coupled wave analysis method that can handle the quasicrystalline structure is presented. The quasicrystalline lattice, which refers to Penrose tiling in this paper, is generated by the cut-and-project method. The normal incidence spectrum presents a broadband multiple responses property. We find that the phase matching condition determines the excitation frequency for a given incident angle, while the depth of the reflection valley depends on the incident polarization. The modes will split into several sub-modes at oblique incidence, which give rise to the appearance of more responses on the spectrum.
我们对二维光子准晶体/金属/衬底结构中表面模式的多重激发进行了数值研究。提出了一种改进的、可处理准晶结构的严格耦合波分析方法。本文中提到的准晶晶格是指彭罗斯镶嵌,它是通过切割投影法生成的。垂直入射光谱呈现出宽带多重响应特性。我们发现,相位匹配条件决定了给定入射角下的激发频率,而反射谷的深度取决于入射偏振。在斜入射时,模式会分裂成几个子模式,这导致光谱上出现更多的响应。