Dai Daoxin, He Sailing
Centre for Optical and Electromagnetic Research, Joint Laboratory of Optical Communications of Zhejiang University, Yu-Quan, Hangzhou 310027, China.
J Opt Soc Am A Opt Image Sci Vis. 2004 Jan;21(1):113-21. doi: 10.1364/josaa.21.000113.
With a perfectly matched layer boundary treatment, a semivectorial finite-difference method is used to calculate the eigenmodes of a single-mode (SM) or multimode (MM) bent rib waveguide. A detailed analysis is given for the dependence of the bending losses (including the pure bending loss and the transition loss) on geometrical parameters of the bent rib waveguide such as the rib width, the rib height, and the bending radius. The characteristics of the higher-order modes are analyzed. It is shown that the bending loss of the fundamental mode can be reduced effectively by increasing the width and height of the rib. For an integrated device, undesired effects due to the higher-order modes of a MM bent waveguide can be removed by appropriate choice of the geometrical parameters. An appropriately designed MM bent waveguide is used to reduce effectively the bending loss of the fundamental mode, and a low-loss SM propagation in a MM bent waveguide is realized when the bending losses of the higher-order modes are large enough.
采用完全匹配层边界处理方法,运用半矢量有限差分法计算单模(SM)或多模(MM)弯曲肋波导的本征模。详细分析了弯曲损耗(包括纯弯曲损耗和过渡损耗)对弯曲肋波导几何参数(如肋宽、肋高和弯曲半径)的依赖性。分析了高阶模的特性。结果表明,通过增加肋的宽度和高度可以有效降低基模的弯曲损耗。对于集成器件,通过适当选择几何参数,可以消除MM弯曲波导高阶模引起的不良影响。设计适当的MM弯曲波导可有效降低基模的弯曲损耗,当高阶模的弯曲损耗足够大时,可实现MM弯曲波导中低损耗的单模传播。