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采用泡生法生长Yb:KYW晶体, 通过XRD分析确认所生长的晶体为β-Yb:KYW. TG-DTA测量结果表明, 晶体的熔点为1045 ℃, 相变温度为1010 ℃. 测得晶体红外光谱和拉曼光谱, 对其峰值所属振动的归属进行了指认, 并测量了晶体的吸收光谱和荧光光谱. 结果表明, Yb:KYW晶体在940, 980 nm附近有很强的吸收峰, 主峰980 nm处的吸收截面积为1.34×10-19 cm2;该晶体在990, 1010, 1030 nm附近都有较强的荧光发射峰, 其中最强发射峰1030 nm的发射线宽高达16 nm, 有望作为可调谐激光器的增益介质. 计算得其1030 nm受激发射截面积为3.1×10-20 cm2.

参考文献

[1] Fan T.Y. .Heat generation in Nd:YAG and Yb:YAG[J].IEEE Journal of Quantum Electronics: A Publication of the IEEE Quantum Electronics and Applications Society,1993(6):1457-1459.
[2] Giesen A;Hugel H;Voss A et al.Scalable concept for diode pumed high power solid state lasers[J].Applied Physics B-Lasers and Optics,1994,58:365.
[3] 牛春晖,曹望和,臧春雨,陈宝玖.Tm3+/Yb3+掺杂亚碲酸盐玻璃蓝红光上转换的研究[J].中国稀土学报,2002(03):227-230.
[4] 臧竞存,徐东勇,邹玉林.Yb3+对Tm3+间接敏化与基质晶格关系[J].中国稀土学报,2001(06):611-613.
[5] 韩秀梅,王国富.双掺Er3+,Yb3+离子KY(WO4)2晶体的光谱性质[J].中国稀土学报,2002(06):584-586.
[6] Metrat G;Boudeulle M;Muhlstein N et al.Nucleation morphology and spectroscopic properties of Yb3+ doped KY(WO4)2 crystals grown by the top nucleated floating crystal method[J].Journal of Crystal Growth,1999,197:883.
[7] Brenier A. .A new evaluation of Yb3+-doped crystals for laser applications[J].Journal of Luminescence: An Interdisciplinary Journal of Research on Excited State Processes in Condensed Matter,2001(3):199-204.
[8] Liu H;Nees J;Mourou G .Diode-pumped kerr-lens mode-locking Yb:KY(WO4)2 laser[J].Optics Letters,2001,26:1723.
[9] Han Xiumei;Wang Guofu .Crystal growth and spectral properties of Nd3+:KY(WO4)2 crystal[J].Journal of Crystal Growth,2003,247:551.
[10] Macalika L;Hanuzaa J;Kaminskiib A A .Polarized Raman spectra of the oriented NaY(WO4)2 and KY(WO4)2 single crystals[J].Journal of Molecular Structure,2000,555:289.
[11] 杨培志,邓佩珍,黄国松,吴光照,殷之文.Yb:YAG晶体的光谱性能[J].光谱学与光谱分析,2000(03):286-289.
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