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Transient thermal effect analysis and laser characteristics of novel Tm: LuYAG crystal
T. W. Ren; L. Zhao; Z. Fan; J. Y. Dong; C. T. Wu; F. Chen; Q. K. Pan and Y. J. Yu
2022
发表期刊Infrared Physics & Technology
ISSN1350-4495
卷号125页码:8
摘要Based on the actual working environment, the thermal model of novel Tm: LuYAG crystal is established, and the transient thermal effect of pulsed laser diode single-end pumped Tm: LuYAG laser under different spot radius, pump power, repetition frequency, pulse width and duty ratio are simulated, analyzed, and discussed theoretically. The output characteristics of pulsed-LD end-pumped Tm: LuYAG laser are achieved and analyzed at different repetition frequencies and duty ratios experimentally. At repetition frequency of 10 Hz, 100 Hz, 1000 Hz and duty ratio of 50 %, the maximum output energy is 724 mJ, 70 mJ, 6.36 mJ, with the slope efficiency is 39.4 %, 38.2 % and 35.5 %, respectively. Moreover, at repetition frequency of 10 Hz and duty ratio of 75 %, the maximum output energy of 900 mJ is achieved with slope efficiency of 34.6 %. The central wavelength of Tm: LuYAG laser is measured to be 2018.96 nm, and the beam quality is M-x(2) = 1.96, M-y(2) = 1.98. To our knowledge, it is the first time to analyze the transient thermal effect of Tm: LuYAG crystal pumped by pulsed laser diode in detail. As far as we know, this is the maximum output energy based on the novel Tm: LuYAG crystal.
DOI10.1016/j.infrared.2022.104238
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收录类别sci ; ei
语种英语
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/67191
专题中国科学院长春光学精密机械与物理研究所
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T. W. Ren,L. Zhao,Z. Fan,et al. Transient thermal effect analysis and laser characteristics of novel Tm: LuYAG crystal[J]. Infrared Physics & Technology,2022,125:8.
APA T. W. Ren.,L. Zhao.,Z. Fan.,J. Y. Dong.,C. T. Wu.,...&Q. K. Pan and Y. J. Yu.(2022).Transient thermal effect analysis and laser characteristics of novel Tm: LuYAG crystal.Infrared Physics & Technology,125,8.
MLA T. W. Ren,et al."Transient thermal effect analysis and laser characteristics of novel Tm: LuYAG crystal".Infrared Physics & Technology 125(2022):8.
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