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The effects of co-doping GeO_2 and Al~(3+) on Ytterbium-Doped Silica-Based Fiber

机译:共掺杂Geo_2和Al〜(3+)对YTterbium掺杂二氧化硅基纤维的影响

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Four types of YDFs with different Al~(3+) concentration and mole content of GeO_2 were manufactured and the refractive index and absorption spectra of these fibers were explored. With the comparison of four YDFs and detailed analyze, it was found that higher Al~(3+) concentration leads to more GeO_2 volatilization, which results in the refractive index decrease. Therefore, mole content of GeO_2 should be increased when co-doping Al~(3+) in YDF to maintain numerical aperture. Meanwhile, the temperature of making porous layer should be controlled exactly to obtain good repetition of Al~(3+)-codoped YDF as the little change of temperature has little effect on mole content of GeO_2 and S_iO_2 but has great effect on compactness of porous layer. By drawing the fiber and testing the related parameters, the results show that the optimum temperature range for making soot layer should between 1440°C and 1480°C where the absorption coefficients were as high as 620dB/m with better repeatability. Finally, the ratio of GeO_2 to S_iO_2 should be controlled to obtain long fluorescence lifetime for fabricating highly ytterbium-doped fiber with required numerical aperture.
机译:四种类型的具有不同的Al〜(3+)浓度和GeO_2基的摩尔含量YDFs的制造了和这些纤维的折射率和吸收光谱进行了探索。与四个YDFs和详述的比较分析,我们发现高Al〜(3+)浓度导致更GeO_2基挥发,其结果折射率降低。因此,GeO_2基的摩尔含量应增加时共掺杂的Al〜(3+)在YDF保持数值孔径。同时,使多孔层的温度应被精确地控制,以获得的Al〜的重复性好(3 +) - 共掺杂YDF作为温度的小变化对GeO_2基和S_iO_2的摩尔含量的影响不大,但对的多孔紧凑很大的影响层。通过拉伸光纤和测试相关参数,结果表明,最佳的温度范围内制备烟灰层应该1440℃,1480℃,在该吸收系数分别高达620分贝/米具有更好的可重复性之间。最后,GeO_2基的至S_iO_2的比率应被控制,以获得长荧光寿命为制造具有所要求的数值孔径高度掺镱光纤。

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