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采用玻璃相分离技术制备的用于光纤激光器的掺镱大芯径石英光纤。

Yb³⁺-doped large core silica fiber for fiber laser prepared by glass phase-separation technology.

作者信息

Chu Yingbo, Ma Yunxiu, Yang Yu, Liao Lei, Wang Yibo, Hu Xiongwei, Peng Jinggang, Li Haiqing, Dai Nengli, Li Jinyan, Yang Luyun

出版信息

Opt Lett. 2016 Mar 15;41(6):1225-8. doi: 10.1364/OL.41.001225.

Abstract

We report on the preparation and optical characteristics of an Yb(3+)-doped large core silica fiber with the active core prepared from nanoporous silica rod by the glass phase-separation technology. The measurements show that the fiber has an Yb(3+) concentration of 9811 ppm by weight, a low background attenuation of 0.02 dB/m, and absorption from Yb(3+) about 5.5 dB/m at 976 nm. The laser performance presents a high slope efficiency of 72.8% for laser emission at 1071 nm and a low laser threshold of 3 W within only 2.3 m fiber length. It is suggested that the glass phase-separation technology shows great potential for realizing active fibers with larger core and complex fiber designs.

摘要

我们报道了一种通过玻璃相分离技术由纳米多孔二氧化硅棒制备活性芯的掺镱大芯二氧化硅光纤的制备及其光学特性。测量结果表明,该光纤的镱(Yb(3+))重量浓度为9811 ppm,背景衰减低至0.02 dB/m,在976 nm处镱(Yb(3+))的吸收约为5.5 dB/m。激光性能方面,在仅2.3 m的光纤长度内,1071 nm激光发射的斜率效率高达72.8%,激光阈值低至3 W。结果表明,玻璃相分离技术在实现具有更大芯径和复杂光纤设计的有源光纤方面具有巨大潜力。

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