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二维介质柱光子晶体波导的优化设计
引用本文:詹仪,郑义,徐云峰.二维介质柱光子晶体波导的优化设计[J].光子学报,2008,37(6):1130-1133.
作者姓名:詹仪  郑义  徐云峰
作者单位:1. 曲阜师范大学,印刷学院,山东,日照,276826
2. 郑州大学,河南省激光与光电子信息重点实验室,郑州,450052
摘    要:通过改变靠近导光区域介质柱的直径和周期,优化设计了二维介质柱光子晶体波导.结果表明:单独增大和减小柱的直径以及增大柱的周期不能提高波导的传输特性;单独减小柱的周期能提高波导的传输特性,获得传输系数小于1 dB,带宽80 nm的波谱;同时减小柱的直径及周期能够极大的提高波导的传输特性,得到了带宽为150~250 nm,传输系数小于1 dB的波谱.

关 键 词:波导光学  光子晶体波导  有限元  介质柱  传输带宽  光子带隙
收稿时间:2006-11-20
修稿时间:2007-05-23

Optimal Design for Two-Dimensional Square Lattice Dielectric Cylinder Photonic Crystal Waveguides
ZHAN Yi,ZHENG Yi,XU Yun-feng.Optimal Design for Two-Dimensional Square Lattice Dielectric Cylinder Photonic Crystal Waveguides[J].Acta Photonica Sinica,2008,37(6):1130-1133.
Authors:ZHAN Yi  ZHENG Yi  XU Yun-feng
Abstract:An effective optimal method by changing the size and periodicity of the pillars next to the guiding region is applied to two-dimensional dielectric pillar of photonic crystal waveguides. It has been shown that individual modifying the size or periodicity of pillars close to the guiding region can not improve the performance sufficiently; only simultaneous decreasing the pillar periodicity and size can significantly improve the transmission properties. 150~250 nm bandwidth, less than 1 dB loss are observed in calculation.
Keywords:Wave optics  Photonic crystal waveguide  Finite element  Dielectric cylinder  Transmission bandwidth  Photonic bandgap
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