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KDP晶体台阶生长动力学的激光干涉实验研究 总被引:5,自引:0,他引:5
采用迈克尔逊干涉技术 ,通过测量KDP晶体生长的法向速率和台阶斜率来研究其台阶生长的动力学系数、台阶自由能、溶质在边界层内的扩散特征以及激发晶体生长台阶的位错活性 .实验表明 ,KDP中不同活性位错的台阶动力学系数差异较大 ,例如高活性和低活性台阶动力学系数分别为 10 .3× 10 -2 和 5 .2 1× 10 -2 cm/s,位错源在晶体表面的形状、面积的变化 ,以及Burgers矢量的变化是造成晶体生长动力学测量数据重复性差的主要原因 相似文献
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Wei Han Lidan Zhou Fang Wang Fuquan Li Keyu Li Liquan Wang Bin Feng Qihua Zhu Jingqin Su Gong Mali 《Optik》2013,124(24):6506-6508
Effect of spatial refractive-index nonuniformities existed in a large-scale rapid growth KDP crystal (a type I frequency doubler at the wavelength of 1053 nm) on third-harmonic conversion is studied. Spatial refractive-index nonuniformities due to imperfections in the crystal structure which prohibit the attainment of phase matching at all locations in the crystal are measured with the orthogonal polarization interferometry technique. And a third-harmonic conversion experiment is conducted on a large-scale facility to investigate the influence of refractive-index nonuniformities on conversion efficiency and third-harmonic beam nearfield. According to the experimental results, refractive-index nonuniformities in this large-scale rapid growth KDP doubler do not reduce the third-harmonic conversion efficiency, but affect the third-harmonic beam nearfield. 相似文献
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B. D. Spitsyna E. N. Vasev G. S. Belikova N. P. Zaitseva A. M. Aronova 《Journal of Applied Spectroscopy》1991,55(3):919-923
Translated from Zhurnal Prikladnoi Spektroskopii, Vol. 55, No. 3, pp. 462–466, September, 1991. 相似文献
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Pure and impurity added (with NH4Cl, NH4NO3, NH4H2PO4, and (NH4)2SO4) KDP single crystals were grown by the gel method using silica gels. X-ray diffraction data were collected for powder samples
and used for the estimation of lattice variation and thermal parameters like Debye-Waller factor, mean-square amplitude of
vibration, Debye temperature and Debye frequency. The thermal parameters do not vary in a particular order with respect to
impurity concentration. The results obtained are reported and discussed. 相似文献
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用第一性原理研究了KH2PO4(KDP)晶体中性本征点缺陷的形成能并计算了常温下点缺陷的浓度。计算得到中性填隙氢原子的形成能为2.05 eV,进而得到298 K下的浓度约为1.21×10-17 mol/L。由于填隙氢原子在带隙中形成缺陷能级,并使能隙降低了2.6 eV, 因此消除填隙氢原子有利于提高晶体在355 nm附近的激光损伤阈值。计算得到的氧间隙、氧空位、钾空位和氢空位的形成能分别为0.60、5.25、6.50 和6.58 eV,常温下它们在晶体中也以较高的浓度存在。钾空位使晶胞体积增大约3.2%,并可能提高晶体电导率,从而降低光损伤阈值。P取代K的反位结构缺陷形成能尽管较低(4.1 eV), 但由于晶体生长溶液中P是以PO4四面体的形式存在,故此点缺陷的存在几率很小。 相似文献
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基于第一性原理的平面波超软赝势法对KDP(KH2PO4)和尿素(CH4N2O)晶体的能带结构、电子态密度、电荷差分密度以及布局分析进行了计算讨论.结果表明:尿素晶体中的C1-O1、C1-N1、N1-H2和N1-H1键都具有共价键特性,带隙值为4.636 eV,价带顶主要由H-1s与N、O的2p态贡献,导带底主要是H-1s与C、N、O的2p态贡献;KDP晶体的H1-O1键具有离子性而P1-O1则具有共价性,带隙宽度为5.713 eV,价带顶主要由O-2p以及P-3p贡献,导带底主要由H-1s、P-3s和3p以及K-4s和3p态贡献. 相似文献
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Growth of a potassium dihydrogen phosphate (KDP) crystal from its aqueous solution has been considered under forced convection conditions. The KDP crystal is grown in a conventional top hanging geometry. Forced convection conditions are created by rotating the crystal about a vertical axis. The rotational RPM is varied in a cycle, creating an accelerated rotation (AR) paradigm. The effect of varying the rotational RPM on the concentration field around the crystal was investigated. Mach-Zehnder interferometry was adopted as an optical technique to image the evolving concentration fields. Six different experiments were performed to obtain the specific set of time periods and rotation rates of the acceleration cycle that result in a uniform concentration field around the growing crystal. The Reynolds number, an index of the strength of forced convection, was optimized through the experiments. The optimized parameters of the accelerated rotation cycle were found to be as follows: maximum rotation rate of 32 RPM, spin up period=40 s, spin down period=40 s, steady period=40 s, and stationary period=40 s. The parametric study further revealed that concentration was highly sensitive to the maximum rotation rate adopted during the AR cycle. It did not depend crucially on the time periods that could be varied by as much as ±25% around the respective average values. Finally, a KDP crystal was grown using the optimized forced convection parameters and the crystal quality was found to be good. 相似文献
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用基于密度泛函理论及超软赝势的第一性原理研究了KH2PO4(KDP)晶体中K空位的电子结构、形成能及驰豫构型。讨论了K空位形成后电荷密度的重新分布、相应的电子态密度和能带结构等性质。计算得到中性K空位的形成能为6.5 eV, 远小于间隙K原子点缺陷形成能13.07 eV。K空位的存在使晶胞体积增大, 分别沿结晶学轴a方向增大近0.8%, b方向增大近0.87%, c方向增大近1.2%,同时使与之配位的8个氧原子发生较大位移,使这8个氧形成的空腔体积增大近3.2%。空腔体积的增大不仅促进了各种点缺陷的扩散迁移,而且有利于其它杂质原子的填隙。K原子迁移率的增大会引起离子电导率的增大,因而会降低KDP的激光损伤阈值,因此从这个方面讲,K空位的存在是不利的。但是如果能从实验上(如热退火)利用K空位所造成的扩散通道排出或改善缺陷结构,则可提高KDP晶体的光学质量。 相似文献
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惯性约束聚变频率转换系统中,大口径薄型KDP晶体的面形质量是影响频率转换效率能否达到设计要求的关键因素之一。针对45放置状态下口径为400 mm400 mm的三倍频KDP晶体,采用ANSYS有限元分析软件,建立了不同夹持方式和具有不同加工误差的KDP晶体模型和夹具模型,分析了加工误差对不同夹持方式下KDP晶体附加面形的影响,给出了不同加工误差和不同夹持情况下,KDP晶体附加面形的P-V值和RMS值。研究结果表明,夹持方式和加工误差是引起KDP晶体附加面形变化的重要因素,正面压条夹持方式即使在晶体和夹具存在加工误差时也可以较好地控制晶体的附加面形。 相似文献
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在高功率激光系统中,精密微机械修复是减缓磷酸二氢钾(KDP)晶体表面缺陷增长的有效方法,使用精密微铣削机床可以加工出球面型与高斯型修复轮廓。为得到最优的修复结构参数,建立了晶体前表面球面型与高斯型修复轮廓的电磁场有限元模型,通过改变轮廓的宽度、深度等参数,对两种修复轮廓的光强调制能力进行对比研究。仿真结果表明光强调制能力主要是由修复轮廓的衍射效应及入射光在修复界面处的二次入射所引起的干涉作用共同决定;针对初始损伤点,建议采用宽深比大于5的修复轮廓,从而有效提高KDP晶体表面缺陷点的激光损伤阈值,对于宽深比大于10的修复轮廓建议选用高斯型;对宽1000 m,深20 m的两种修复表面的激光损伤实验表明,高斯型修复轮廓具有较高的抗损伤能力,实验与仿真结果相一致。 相似文献