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Broadband amplified spontaneous emission from Er^3+ -doped single-mode tellurite fibre
引用本文:陈东丹,张勤远,刘粤惠,徐善辉,杨中民,邓再德,姜中宏.Broadband amplified spontaneous emission from Er^3+ -doped single-mode tellurite fibre[J].中国物理 B,2006,15(12):2902-2905.
作者姓名:陈东丹  张勤远  刘粤惠  徐善辉  杨中民  邓再德  姜中宏
作者单位:Key Laboratory of Specially Functional Materials and Advanced Manufacturing Technology of Ministry of Education and Institute of Optical Communication Materials, South China University of Technology, Guangzhou 510641, China;Key Laboratory of Specially Functional Materials and Advanced Manufacturing Technology of Ministry of Education and Institute of Optical Communication Materials, South China University of Technology, Guangzhou 510641, China;Key Laboratory of Specially Functional Materials and Advanced Manufacturing Technology of Ministry of Education and Institute of Optical Communication Materials, South China University of Technology, Guangzhou 510641, China;Key Laboratory of Specially Functional Materials and Advanced Manufacturing Technology of Ministry of Education and Institute of Optical Communication Materials, South China University of Technology, Guangzhou 510641, China;Key Laboratory of Specially Functional Materials and Advanced Manufacturing Technology of Ministry of Education and Institute of Optical Communication Materials, South China University of Technology, Guangzhou 510641, China;Key Laboratory of Specially Functional Materials and Advanced Manufacturing Technology of Ministry of Education and Institute of Optical Communication Materials, South China University of Technology, Guangzhou 510641, China;Key Laboratory of Specially Functional Materials and Advanced Manufacturing Technology of Ministry of Education and Institute of Optical Communication Materials, South China University of Technology, Guangzhou 510641, China
基金项目:Project supported by the National Natural Science Foundation of China (Grant Nos 50472053 and 60307004), National Century Elitist Table (Grant Nos 04-0821 and 04-0823) and Natural Science Foundation of Guangdong Province. (Grant Nos 04020036 and 2004A1060
摘    要:This paper reports on the fabrication and characterization of a newly erbium-doped single-mode tellurite glass-fibre applicable for 1.5-μum optical amplifiers. A very broad erbium amplified spontaneous emission in the range 1450--1650nm from erbium-doped single-mode tellurite glass-fibre is obtained upon excitation of a 980-nm laser diode. The effects of the length of glass-fibre and the pumping power of laser diode on the amplified spontaneous emission are discussed. The result indicates that the tellurite glass-fibre is a promising candidate for designing fibre-optic amplifiers and lasers.

关 键 词:增强自发射  铒基亚碲酸盐纤维  热稳定性  激光二极管
收稿时间:2005-11-03
修稿时间:2005-11-032006-07-17

Broadband amplified spontaneous emission from Er3+-doped single-mode tellurite fibre
Chen Dong-Dan,Zhang Qin-Yuan,Liu Yue-Hui,Xu Shan-Hui,Yang Zhong-Min,Deng Zai-De and Jiang Zhong-Hong.Broadband amplified spontaneous emission from Er3+-doped single-mode tellurite fibre[J].Chinese Physics B,2006,15(12):2902-2905.
Authors:Chen Dong-Dan  Zhang Qin-Yuan  Liu Yue-Hui  Xu Shan-Hui  Yang Zhong-Min  Deng Zai-De and Jiang Zhong-Hong
Institution:Key Laboratory of Specially Functional Materials and Advanced Manufacturing Technology of Ministry of Education and Institute of Optical Communication Materials, South China University of Technology,Guangzhou 510641, China
Abstract:This paper reports on the fabrication and characterization of a newly erbium-doped single-mode tellurite glass-fibre applicable for 1.5-μum optical amplifiers. A very broad erbium amplified spontaneous emission in the range 1450--1650nm from erbium-doped single-mode tellurite glass-fibre is obtained upon excitation of a 980-nm laser diode. The effects of the length of glass-fibre and the pumping power of laser diode on the amplified spontaneous emission are discussed. The result indicates that the tellurite glass-fibre is a promising candidate for designing fibre-optic amplifiers and lasers.
Keywords:amplified spontaneous emission  erbium-doped tellurite fibre  thermal stability
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