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通过对K2WO4和K2W2O7两种助溶剂的对比、分析,选择K2W2O7做助溶剂,采用顶部籽晶(TSSG)法生长Yb:KGW晶体.设计了合理的工艺条件:转速:10~15r/min;降温速率:0.05℃/h;生长周期:15d.通过对Yb:KGW晶体粉末样品的X-ray衍射谱与KGW粉末样品的X-ray衍射谱对比分析,生长晶体为β-Yb:KGW晶体.利用TG-DTA测定Yb:KGW晶体的熔点及相变温度分别是1086℃和1021℃.通过对晶体缺陷的观察分析认为,晶体裂缝及包裹物等缺陷与生长工艺条件密切相关,应尽量减少生长过程中的温度、浓度及生长速度的波动,保持晶体的稳态生长.

参考文献

[1] Kuleshov N V;Lagatsky A A;Shcherbitsky A G et al.CW Laser Performancer of Yb3+ and Er3+, Yb3+ Doped Tungstate[J].Applied Physics B-Lasers and Optics,1997,64:409.
[2] Pujol MC.;Massons J.;Gavalda J.;Solans X.;Zaldo C.;Diaz F. Aguilo M.;Sole R. .Structural study of monoclinic KGd(WO4)(2) and effects of lanthanide substitution[J].Journal of Applied Crystallography,2001(1):1-6.
[3] Kuleshov NV;Lagatsky AA;Podlipensky AV;Mikhailov VP;Huber G .Pulsed laser operation of Yb-doped KY(WO4)(2) and KGd(WO4)(2)[J].Optics Letters,1997(17):1317-1319.
[4] Lagatsky A.A.;Mikhailov V.P.;Kuleshov N.V. .Diode-pumped CW lasing of Yb:KYW and Yb:KGW[J].Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter,1999(1/3):71-75.
[5] Lagatsky A A;Kuleshov N V;Mikhailov V P .DiodePumped CW Yb: KGW and Yb:KYW Minilasers[J].OSA Trends in Optics and Photonics,26:291-294.
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