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JOURNAL OF SYNTHETIC CRYSTALS ›› 2024, Vol. 53 ›› Issue (9): 1504-1511.

• Research Articles • Previous Articles     Next Articles

Spectral Analysis and Thermal Properties of Nd∶GdYAG Laser Crystal

DOU Renqin1,2, LIU Yao1,2,3, LUO Jianqiao1,2, WANG Xiaofei1,2, LIU Wenpeng1,2, ZHANG Qingli1,2   

  1. 1. Anhui Provincial Key Laboratory of Photonic Devices and Materials, Anhui Institute of Optics and Fine Mechanics, Hefei Institutes of Physical Science, Chinese Academy of Sciences, Hefei 230031, China;
    2. Advanced Laser Technology Laboratory of Anhui Province, Hefei 230037, China;
    3. University of Science and Technology of China, Hefei 230026, China
  • Received:2024-05-30 Online:2024-09-15 Published:2024-09-19

Abstract: The adsorption and fluorescence spectra of the grown Nd∶GdYAG were measured. The spectral parameters, such as oscillator strength, line strength, intensity parameter Ωt, transition probability between 4F3/24IJ levels, radiation lifetime, and fluorescence branching ratio, were calculated with Judd-Ofelt theory. The calculated Ωt are Ω2=(0.813±0.200)×10-20 cm2, Ω4=(3.381±0.187)×10-20 cm2, Ω6=(5.135±0.278)×10-20 cm2, respectively. Compared with Nd-doped YAG, LuAG, YVO4, and other crystals, Nd∶GdYAG crystal has a larger Ω2, showing that the addition of Gd3+increases the disorder of the host. The absorption cross-section and refractive index in the range of 300~1 200 nm were calculated and fitted. The absorption cross-section at 808 nm is 5.0×10-20 cm2. The refractive index at 1 064 nm is 1.80. The measured fluorescence lifetime of 4F3/2 level is 228 μs, which is close to the calculated radiation lifetime of 240 μs. The emission cross-section at 1 064 nm is 1.23×10-19 cm2, which is close to that of Nd∶YAG crystal. Addition, at room temperature, the thermal conductivity of Nd∶GdYAG crystal is 5.992 W/(m·K), which is slightly smaller than that of Nd∶YAG and Nd∶GGG, but larger than that of Nd∶YVO4 crystal. The results show that Nd∶GdYAG is a promising new laser crystal material.

Key words: laser crystal, Nd∶GdYAG, spectral analysis, Judd-Ofelt theory, thermal conductivity

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