Recent development of new active optical fibres for broadband photonic applications

G. Peng, Yanhua Luo, Jianzhong Zhang, J. Wen, B. Yan, J. Canning
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引用次数: 11

Abstract

In recent years intensive research has shown broadband luminescence in the range of 1100 to 1500 nm, across O, E and S bands of the telecommunications window from glasses or materials with Bi-doping and Bi/Er codoping. This presentation will report our research on active optical fibres based on new material compositions incorporating Bi, Er and Al into phosphogermanosilicate glasses. Emission and absorption are two main properties of active optical fibers that are of interest for fiber amplifiers and lasers. Hence, we report the recent development of Bi/Er/Al codoped phosphogermanosilicate optical fibres showing ultra broadband luminescence between 1000 and 1570 nm, covering O, E, S, C, and L bands, when pumped by 532, 808, or 980 nm lasers. This type of new material composition optical fibres is designed for potential use as an ultra broadband gain medium for ultra broadband amplified spontaneous emission (ASE) sources, tunable fibre lasers, or ultra broadband amplifiers in telecommunications and in other fields.
用于宽带光子应用的新型有源光纤的最新进展
近年来的深入研究表明,双掺杂和双/铒共掺杂的玻璃或材料在通信窗口的O, E和S波段上,在1100至1500 nm范围内发出宽带发光。本报告将报告我们基于将Bi, Er和Al纳入磷锗硅酸盐玻璃的新材料组合物的有源光纤的研究。发射和吸收是有源光纤的两个主要特性,是光纤放大器和激光器的研究热点。因此,我们报道了最近发展的Bi/Er/Al共掺磷锗硅酸盐光纤,当被532、808或980 nm激光泵浦时,其发光范围在1000至1570 nm之间,覆盖O、E、S、C和L波段。这种新型材料组合光纤被设计为潜在的超宽带增益介质,用于超宽带放大自发发射(ASE)源、可调谐光纤激光器或电信和其他领域的超宽带放大器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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