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Influence of Mg/Er co-doping on the principal laser parameters of LiNbO3 crystals

机译:Mg / Er共掺杂对LiNbO3晶体主要激光参数的影响

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Mg: Er: LiNbO3 crystals were grown by the Czochralski technique with various concentrations of MgO = 2 mol%, 4 mol%, 6 mol% and the fixed concentration of Er2O3= I mol% in the melt, and the 8 mol%Mg: 1 mol%Er: LiNbO3 crystal was fabricated by the Czochralski technique with special technology process. The crystals were treated by polarization, reduction and oxidation. The segregation coefficients of Mg2+ and Er3+ in Mg: Er: LiNbO3 crystals were measured by X-ray fluorescence spectrograph, as well as the crystal's defect structure and optical properties were analyzed by the UV-Vis, IR and fluorescent spectroscopy. The pump wavelength and the surge wavelength were determined. Using m-line method tested optical damage resistance of those crystals, the results show that photodamage threshold of Mg: Er: LiNbO3 crystals are higher than that of Er: LiNbO3 crystal, and the oxidation treat could enhance the photodamage resistant ability of crystals while the reduction treat could depress the ability. The optical damage resistance of 8 mol%Mg: 1 mol%Er; LiNbO3 crystal was the strongest among the samples, which was two orders magnitude higher than that of I mol%Er: LiNbO3 crystal. The dependence of the optical properties on defect structure of Mg: Er: LiNbO3 crystals was discussed. (C) 2007 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
机译:Mg:Er:LiNbO3晶体通过Czochralski技术生长,熔体中的各种浓度的MgO = 2 mol%,4 mol%,6 mol%,固定浓度的Er2O3 = 1 mol%,Mg:8 mol% 1摩尔%Er:LiCnbO3晶体是通过Czochralski技术采用特殊工艺制备的。通过极化,还原和氧化处理晶体。用X射线荧光光谱仪测量了Mg:Er:LiNbO3晶体中Mg2 +和Er3 +的偏析系数,并通过UV-Vis,IR和荧光光谱分析了晶体的缺陷结构和光学性质。确定了泵浦波长和喘振波长。用m线法测试了这些晶体的抗光损伤性,结果表明Mg:Er:LiNbO3晶体的光损伤阈值高于Er:LiNbO3晶体,并且通过氧化处理可以增强晶体的抗光损伤能力。减少治疗可能会降低能力。耐光学损伤性为8mol%Mg:1mol%Er;在样品中,LiNbO3晶体最强,比I mol%Er:LiNbO3晶体高两个数量级。讨论了光学性质对Mg:Er:LiNbO3晶体缺陷结构的依赖性。 (C)2007 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim。

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