Martinez Alejandro, Garcia Jaime, Sanchez Guillermo, Marti Javier
Fibre-Radio Group, ITACA Research Institute, Universidad Politécnica de Valencia, Camino de Vera s/n, 46022 Valencia, Spain.
J Opt Soc Am A Opt Image Sci Vis. 2003 Nov;20(11):2131-6. doi: 10.1364/josaa.20.002131.
A planar photonic crystal that allows inherently gap-guided single-mode waveguides is proposed and discussed. This novel structure consists of a two-dimensional lattice of silicon rods embedded on a thin silica slab sandwiched between two silica claddings whose refractive indices are slightly lower than the index of the silica core. The physical parameters of the structure, i.e., rod radius and core thickness, are optimized to maximize the bandgap width for odd modes. Lossless guided modes inside the bandgap and below the claddings' light cone are obtained by reducing the radius of a row of rods. The waveguide bandwidth can be increased by inserting a thin silicon dielectric waveguide instead of the row of rods. The proposed approach may overcome many of the common drawbacks in conventional holes-on-dielectric planar photonic crystal waveguides.
提出并讨论了一种允许固有带隙引导单模波导的平面光子晶体。这种新颖的结构由嵌入在薄二氧化硅平板上的硅棒二维晶格组成,该平板夹在两个二氧化硅包层之间,其折射率略低于二氧化硅芯的折射率。对结构的物理参数,即棒半径和芯厚度进行了优化,以最大化奇数模式的带隙宽度。通过减小一排棒的半径,可在带隙内和包层光锥以下获得无损导模。通过插入薄硅介质波导而非一排棒,可以增加波导带宽。所提出的方法可能克服传统介质平面光子晶体波导中的许多常见缺点。