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液相法合成了GdVO4和YVO4多晶料,提拉法成功生长了低浓度掺钕的不同钆钇比YGdVO4混晶.X射线荧光分析法分析了晶体组分.吸收谱和透射谱显示,Nd:YGdVO4具有更大的吸收半宽.不同Gd/Y浓度比的晶体激光性能有所不同,最大1.06μm激光输出达到7W,同时晶体在1.34μm 的激光输出超过了3W.Nd:YGdVO4混晶是一种新的具有潜力的激光晶体.

参考文献

[1] 祝俐,张怀金,孟宪林,张宏臻,Wang Changqing,Y.T.Chow,Wang Pu,Judith Dawes.Nd∶GdVO4晶体生长及其1064nm的激光特性[J].人工晶体学报,1999(03):229-232.
[2] Zhang HJ.;Liu JH.;Wang JY.;Wang CQ.;Zhu L.;Shao ZS.;Meng XL.;Hu XB. Jiang MH.;Chow YT. .Characterization of the laser crystal Nd : GdVO4[J].Journal of the Optical Society of America, B. Optical Physics,2002(1):18-27.
[3] Wang C;Chow Y T;Reekie L et al.A Comparative of the Laser Performance of Diode-laser-pumped of Nd:YVO4 and Nd:GdVO4[J].Applied Physics B-Lasers and Optics,2000,70:769-772.
[4] Lianjie Qin;Xianlin Meng;Chenlin Du et al.Growth Luminescence Properties and Laser Characterization of Nd:GdVO4 Crystal at 1 34μm[J].Japanese Journal of Applied Physics,2002,41:6018-6019.
[5] P A Studenikin;A I Zagumennyi;Yu D Zavartsev;P A Popov;I A Shcherbakov .GdVO_4 as a new medium for solid-state lasers: some optical and thermal properties of crystals doped with Cd~(3+), Tm~(3+), and Er~(3+) ions[J].Quantum electronics,1995(12):1162-1165.
[6] Qin LJ.;Meng XL.;Zhang JG.;Zhu L.;Zhang HJ.;Xu BC.;Jiang HD. .Growth and defects of Nd : GdVO4 single crystal[J].Journal of Crystal Growth,2002(1/2):183-188.
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