Infrared and Laser Engineering, Volume. 53, Issue 3, 20230717(2024)

Thermal effect of laser diode end pump square Tm:YAG composite crystal

Jiaxin Ren1, Long Li1,2, Xinyang Li1, Hengxin Yang1, Yuxiao Ji1, and Chunling Zhang1,2
Author Affiliations
  • 1Faculty of Science, Xi'an University of Architecture & Technology, Xi'an 710055, China
  • 2Institute for Applied Physics, Xi'an University of Architecture & Technology, Xi'an 710055, China
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    Figures & Tables(12)
    Cavity structure diagram of pulsed LD end pumped Tm:YAG laser
    Structure schematic diagram of square Tm:YAG crystal model and heat sink experimental device . (a) Heat sink experimental device; (b) Single-ended bonded crystal model; (c) Double-ended bonded crystals
    Three-dimensional temperature distribution of square composite Tm:YAG crystal. (a) Longitudinal section of single-ended bonded crystal (y=0); (b) single-ended bonded gain crystal end face (z=c1); (c) Longitudinal section of double-ended bonded crystal (y=0); (d) Double-ended bonded gain crystal end face (z=c1)
    Temperature profile of single-ended bonded crystal (x=0). (a) \begin{document}$ {c}_{1} $\end{document}=0 mm; (b) \begin{document}$ {c}_{1} $\end{document}=0.2 mm; (c) \begin{document}$ {c}_{1} $\end{document}=0.4 mm; (d) \begin{document}$ {c}_{1} $\end{document}=0.6 mm
    Temperature profile of double-ended bonded crystal (y=0). (a) c1=0.2 mm; (b) c1=0.4 mm; (c) c1=0.6 mm
    The maximum temperature in the composite crystal varies with the thickness of the gain crystal
    Stress distribution of YAG/Tm:YAG crystals. (a) Single-ended bonding; (b) Double-ended bonding
    YAG/Tm:YAG crystal side profile stress distribution(x=0). (a) Single-ended bonding; (b) Double-ended bonding
    Three-dimensional distribution of thermal deformation of composite crystal (y=0). (a) Single-ended bonding; (b) Double-ended bonding
    Profile profile variable distribution of single-ended bonded Tm:YAG composite crystal (y=0). (a) \begin{document}$ {c}_{1} $\end{document}=0 mm;(b) \begin{document}$ {c}_{1} $\end{document}=0.2 mm;(c) \begin{document}$ {c}_{1} $\end{document}=0.4 mm;(d) c1=0.6 mm
    Double-ended bond Tm:YAG composite crystal profile profile variable distribution (x=0). (a) c1=0.4 mm; (b) c1=0.8 mm; (c) c1=1.2 mm
    • Table 1. Thermal performance of Tm:YAG crystal[16]

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      Table 1. Thermal performance of Tm:YAG crystal[16]

      ParameterValue
      $ \mathrm{D}\mathrm{e}\mathrm{n}\mathrm{s}\mathrm{i}\mathrm{t}\mathrm{y}/\mathrm{g}\cdot{\mathrm{c}\mathrm{m}}^{-3} $4.56
      $ \mathrm{T}\mathrm{h}\mathrm{e}\mathrm{r}\mathrm{m}\mathrm{a}\mathrm{l}\;\;\mathrm{c}\mathrm{o}\mathrm{n}\mathrm{d}\mathrm{u}\mathrm{c}\mathrm{t}\mathrm{i}\mathrm{v}\mathrm{i}\mathrm{t}\mathrm{y}/\mathrm{W}\cdot {\mathrm{m}}^{-1}\cdot {\mathrm{K}}^{-1} $14
      $ \mathrm{S}\mathrm{p}\mathrm{e}\mathrm{c}\mathrm{i}\mathrm{f}\mathrm{i}\mathrm{c}\;\;\mathrm{h}\mathrm{e}\mathrm{a}\mathrm{t}/\mathrm{J}\cdot {\mathrm{g}}^{-1}\cdot {\mathrm{K}}^{-1} $0.59
      $ \mathrm{C}\mathrm{o}\mathrm{e}\mathrm{f}\mathrm{f}\mathrm{i}\mathrm{c}\mathrm{i}\mathrm{e}\mathrm{n}\mathrm{t}\;\;\mathrm{o}\mathrm{f}\;\;\mathrm{t}\mathrm{h}\mathrm{e}\mathrm{r}\mathrm{m}\mathrm{a}\mathrm{l}\;\;\mathrm{e}\mathrm{x}\mathrm{p}\mathrm{a}\mathrm{n}\mathrm{s}\mathrm{i}\mathrm{o}\mathrm{n}/{\mathrm{K}}^{-1} $8×106
      Initial temperature/K291
      Water cooling temperature/K288.15
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    Jiaxin Ren, Long Li, Xinyang Li, Hengxin Yang, Yuxiao Ji, Chunling Zhang. Thermal effect of laser diode end pump square Tm:YAG composite crystal[J]. Infrared and Laser Engineering, 2024, 53(3): 20230717

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    Paper Information

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    Received: Dec. 25, 2023

    Accepted: --

    Published Online: Jun. 21, 2024

    The Author Email:

    DOI:10.3788/IRLA20230717

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