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首页> 外文期刊>Journal of the European Ceramic Society >Origin of light scattering in ytterbium doped calcium fluoride transparent ceramic for high power lasers
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Origin of light scattering in ytterbium doped calcium fluoride transparent ceramic for high power lasers

机译:大功率激光掺do氟化钙透明陶瓷中光散射的起源

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摘要

The origin of light scattering defects was studied in transparent 6 at% Yb:CaF_2 ceramics. Samples were synthesized by a soft chemistry route followed by sintering and hot pressing which leads to highly transparent ceramics with low scattering losses (0.016 cm~(-1) at 1200 nm). Light scattering defects were studied using scanning transmission electron microscopy (STEM) and high angle annular dark field-STEM (HAADF-STEM) techniques. Energy dispersive X-ray spectroscopy showed a 50% increase in Yb~(3+) concentration at grain boundaries. A 3-5 nm thick oxygen rich phase was detected at some grain boundaries by both HAADF-STEM and EDS. The origin of the oxygenized grain boundaries was traced to a 2-15 nm thick oxygenized shell present on the starting powders. Analysis of high resolution HAADF-STEM images revealed that Yb~(3+) substitutes into the fiuorite lattice as clusters rather than individual ions, but the types of clusters could not be identified by this imaging technique.
机译:在透明的6 at%Yb:CaF_2陶瓷中研究了光散射缺陷的起源。通过软化学路线合成样品,然后进行烧结和热压,从而得到具有低散射损耗(在1200 nm下为0.016 cm〜(-1))的高度透明的陶瓷。使用扫描透射电子显微镜(STEM)和高角度环形暗场-STEM(HAADF-STEM)技术研究了光散射缺陷。能量色散X射线光谱显示晶界处的Yb〜(3+)浓度增加了50%。 HAADF-STEM和EDS在某些晶界处检测到3-5 nm厚的富氧相。氧合晶界的起源可追溯到起始粉末上存在的2-15 nm厚的氧合壳。对高分辨率HAADF-STEM图像的分析表明,Yb〜(3+)以簇而不是单个离子的形式代替了氟离子晶格,但是这种成像技术无法识别簇的类型。

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