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Fibre Bragg Gratings Inscribed in Homemade Microstructured Fibres
引用本文:金龙 开桂云 李进延 陈伟 刘建国 刘艳格 王志 张键 刘波 袁树忠 董孝义. Fibre Bragg Gratings Inscribed in Homemade Microstructured Fibres[J]. 中国物理快报, 2007, 24(6): 1603-1606
作者姓名:金龙 开桂云 李进延 陈伟 刘建国 刘艳格 王志 张键 刘波 袁树忠 董孝义
作者单位:[1]Institute of Modern Optics, Nankai University, Tianjin 300071 [2]Key Laboratory of Opto-Electronic Information Science and Technology (Ministry of Education), Nankai University, Tianjin 300071 [3]Optical Fibre R&D Department of FiberHome Telecommunication Technologies Co. Ltd, Wuhan 430074
基金项目:Supported by the National Key Basic Research Programme of China under Grant Nos 2003CB314906 and 2003CB314905, the National High-Technology Programme of China under Grant No 2006AA01Z217, the Tianjin Natural Science Foundation under Grant No 06YFJZJC00300, and the 0pen Research Fund of Key Laboratory of 0pto-Electronic Information Science and Technology (Ministry of Education) in Nankai University
摘    要:Fibre Bragg gratings (FBGs) are inscribed in homemade microstructured fibres by the standard phase mask method. Enhanced couplings between the forward fundamental mode and backward cladding modes are obtained. The mode coupling and spectral characteristics are investigated experimentally. The cladding mode resonances can be affected by filling active materials into the air holes, which will be useful for the implementation of tunable photonic devices in optical fibre communication and sensing systems.

关 键 词:微结构光纤 光学应用 光栅 基础模型
收稿时间:2006-12-08
修稿时间:2006-12-08

Fibre Bragg Gratings Inscribed in Homemade Microstructured Fibres
JIN Long,KAI Gui-Yun,LI Jin-Yan,CHEN Wei,LIU Jian-Guo,LIU Yan-Ge,WANG Zhi,ZHANG Jian,LIU Bo,YUAN Shu-Zhong,DONG Xiao-Yi. Fibre Bragg Gratings Inscribed in Homemade Microstructured Fibres[J]. Chinese Physics Letters, 2007, 24(6): 1603-1606
Authors:JIN Long  KAI Gui-Yun  LI Jin-Yan  CHEN Wei  LIU Jian-Guo  LIU Yan-Ge  WANG Zhi  ZHANG Jian  LIU Bo  YUAN Shu-Zhong  DONG Xiao-Yi
Affiliation:Ministry of Education
Abstract:Fibre Bragg gratings (FBGs) are inscribed in homemade microstructured fibres by the standard phase mask method. Enhanced couplings between the forward fundamental mode and backward cladding modes are obtained.The mode coupling and spectral characteristics are investigated experimentally. The cladding mode resonances can be affected by fillingactive materials into the air holes, which will be useful for the implementation of tunable photonic devices in optical fibre communication and sensing systems.
Keywords:42.81.Bm  42.81.Dp  42.79.Gn
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