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激光二极管侧抽运长方形Nd:YVO_4激光晶体热分析 被引量:10
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作者 史彭 李隆 甘安生 《中国激光》 EI CAS CSCD 北大核心 2007年第2期176-180,共5页
以解析分析理论为基础,研究长方形Nd∶YVO4激光晶体受到具有高斯分布半导体激光侧端面抽运时,晶体温度场和热形变的分布情况。通过对激光二极管(LD)侧面抽运晶体工作特点分析,建立了符合实际工作情况的热模型,利用正交各向异性材料热传... 以解析分析理论为基础,研究长方形Nd∶YVO4激光晶体受到具有高斯分布半导体激光侧端面抽运时,晶体温度场和热形变的分布情况。通过对激光二极管(LD)侧面抽运晶体工作特点分析,建立了符合实际工作情况的热模型,利用正交各向异性材料热传导方程,得出长方形Nd∶YVO4晶体温度场和热形变场通解表达式,并提出了两种有效减小晶体热形变的方法。研究结果表明,当使用输出功率为30 W的激光二极管侧面中心抽运Nd∶YVO4激光晶体时,在抽运端面中心获得240.0℃最高温升和4.73μm最大热形变量。偏心0.6 mm时,端面最大热形变量减少31.1%。晶体厚度减小30%时,端面最大热形变量减少23.5%。 展开更多
关键词 激光器 Nd:YVO4激光晶体 长方形激光晶体 温度场 热形变场 泊松方程
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Theoretical analysis and experimental research on thermal focal length of a YVO_4/Nd:YVO_4 composite crystal 被引量:1
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作者 周城 《Chinese Physics B》 SCIE EI CAS CSCD 2009年第4期1547-1552,共6页
This paper investigates the temperature field distribution and thermal focal length within a laser diode array (LDA) end-pumped YVO4/Nd:YVO4 rectangular composite crystal. A general expression of the temperature fi... This paper investigates the temperature field distribution and thermal focal length within a laser diode array (LDA) end-pumped YVO4/Nd:YVO4 rectangular composite crystal. A general expression of the temperature field distribution within the Nd:YVO4 rectangular crystal was obtained by analysing the characteristics of the Nd:YVO4 crystal and solving the Poisson equation with boundary conditions. The temperature field distributions in the Nd:YVO4 rectangular crystal for the YVO4/Nd:YVO4 composite crystal and the Nd:YVO4 single crystal are researched respectively. Calculating the thermal focal length within the Nd:YVO4 rectangular crystal was done by an analysis of the additional optical path differences (OPD) caused by heat, which was very identical with experimental results in this paper. Research results show that the maximum relative temperature on the rear face of the Nd:YVO4 crystal in the composite crystal is 150 K and the thermal focal length is 35.7mm when the output power of the LDA is 22 W. In the same circumstances, the experimental value of the thermal focal length is 37.4 mm. So the relative error between the theoretical analysis and the experimental result is only 4.5%. With the same conditions, the thermal focal length of the Nd:YVO4 single crystal is 18.5 mm. So the relative rate of the thermal focal length between the YVO4/Nd:YVO4 crystal and the Nd:YVO4 crystal is 93%. So, the thermal stability of the output power and the beam quality of the YVO4/Nd:YVO4 laser is more advantageous than the laser with Nd:YVO4 single crystal. 展开更多
关键词 thermal focal length temperature field distribution rectangular laser composite crystal
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