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石英基掺Yb3+光纤中Al3+共掺特性的研究

延凤平 王琳 魏淮 傅永军 简伟 郑凯 毛向桥 李坚 刘利松 彭健 简水生

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石英基掺Yb3+光纤中Al3+共掺特性的研究

延凤平, 王琳, 魏淮, 傅永军, 简伟, 郑凯, 毛向桥, 李坚, 刘利松, 彭健, 简水生

Investigation of co-doping Al3+ in ytterbium-doped silica-based fiber

Yan Feng-Ping, Wang Lin, Wei Huai, Fu Yong-Jun, Jian Wei, Zheng Kai, Mao Xiang-Qiao, Li Jian, Liu Li-Song, Peng Jian, Jian Shui-Sheng
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  • 基于实验测试结果分析了用于大功率光纤激光器的石英基包层抽运掺Yb3+光纤中Al3+共掺的特性.揭示出在高掺Yb3+的石英基光纤中,共掺Al3+的摩尔浓度为Yb3+摩尔浓度的9—11倍时既可以减小Yb3+的浓度猝灭概率,又可以获得高吸收系数,同时还可更好地满足数值孔径的要求的结论.在此基础上利用MCVD设备并结合湿法掺杂工艺制作出多根石英基掺Yb3+光纤预制棒,对拉丝后光纤的相关参数测试表明,通过精确控制疏松层的沉积温度,掺Yb3+光纤在976 nm波长的吸收系数可高达620 dB/m,且重复性好.这一结论为共掺Al3+的掺Yb3+光纤制作提供了良好的借鉴作用.
    The characteristics of co-doping Al3+ in ytterbium-doped silica-based fiber used for high-power cladding pumped laser were analyzed based on experimental analysis. The results show that the optimum mole percent of Al3+ to Yb3+ is 9—11 for high concentration of ytterbium-doped silica-based fiber at which low concentration quenching probability, high absorption coefficient and proper numerical aperture can be obtained. Meanwhile, ytterbium-doped silica-based fiber preforms were fabricated by MCVD and special solution doping technique. By soot layer temperature experiment and test of the related parameters of the drawn fiber, the results show that the optimum temperature for making soot layer can be accurately controlled and the absorption coefficient at 976 nm was as high as 620 dB/m with good repeatability. This conclusion makes a useful reference for fabrication of ytterbium-doped Al3+ co-doped fiber.
    • 基金项目: 国家自然科学基金(批准号:60577034)资助的课题.
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  • 文章访问数:  7079
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出版历程
  • 收稿日期:  2007-11-28
  • 修回日期:  2008-01-03
  • 刊出日期:  2009-03-20

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