• Chinese Optics Letters
  • Vol. 21, Issue 2, 021401 (2023)
Jian Feng1、2, Cunzhu Tong1、*, Yufei Zhao1、3, Andreas Popp4, Berthold Schmidt4, Lijie Wang1, Bo Meng1, Huanyu Lu1, Yanjing Wang1, Xin Zhang1, and Lijun Wang1
Author Affiliations
  • 1State Key Laboratory of Luminescence and Applications, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China
  • 2Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
  • 3Changchun University of Science and Technology, Changchun 130021, China
  • 4TRUMPF GmbH + Co. KG, Ditzingen 71254, Germany
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    DOI: 10.3788/COL202321.021401 Cite this Article Set citation alerts
    Jian Feng, Cunzhu Tong, Yufei Zhao, Andreas Popp, Berthold Schmidt, Lijie Wang, Bo Meng, Huanyu Lu, Yanjing Wang, Xin Zhang, Lijun Wang. Wavelength-tunable multi-point pump semiconductor disk laser based on an intra-cavity transmission grating[J]. Chinese Optics Letters, 2023, 21(2): 021401 Copy Citation Text show less
    Schematic diagram of the experiment setup. (a) Multi-point pumped SDL with an intra-cavity transmission grating. (b) The geometric relationship of pump spots and transmission diffraction grating. (c) Linear straight cavity with the same cavity length as (a).
    Fig. 1. Schematic diagram of the experiment setup. (a) Multi-point pumped SDL with an intra-cavity transmission grating. (b) The geometric relationship of pump spots and transmission diffraction grating. (c) Linear straight cavity with the same cavity length as (a).
    (a) Output power curve of the linear straight cavity and the cavity with transmission grating. Inset: spectrum measured at 29.3 W pump power. (b) Laser beam waist size of the two cavities at different pump power. (c) Output power curve of the two cavities in units of kW/cm2.
    Fig. 2. (a) Output power curve of the linear straight cavity and the cavity with transmission grating. Inset: spectrum measured at 29.3 W pump power. (b) Laser beam waist size of the two cavities at different pump power. (c) Output power curve of the two cavities in units of kW/cm2.
    (a) Emission spectrum at different output powers in the linear straight cavity. (b) Spectrum and maximum output power of the cavity with transmission grating measured at different wavelength tuning points.
    Fig. 3. (a) Emission spectrum at different output powers in the linear straight cavity. (b) Spectrum and maximum output power of the cavity with transmission grating measured at different wavelength tuning points.
    Output power curve of multi-point pump SDL with an intra-cavity transmission grating. (a) No. 1 and No. 3 two-point synchronous pumping. (b) No. 1, No. 2, and No. 3 three-point synchronous pumping.
    Fig. 4. Output power curve of multi-point pump SDL with an intra-cavity transmission grating. (a) No. 1 and No. 3 two-point synchronous pumping. (b) No. 1, No. 2, and No. 3 three-point synchronous pumping.
    Pump-power-dependent M2 factors for (a) the linear straight cavity, (b) No. 2 single-point pumping cavity with transmission grating, (c) No. 1, No. 2, and No. 3 three-point pumping cavity.
    Fig. 5. Pump-power-dependent M2 factors for (a) the linear straight cavity, (b) No. 2 single-point pumping cavity with transmission grating, (c) No. 1, No. 2, and No. 3 three-point pumping cavity.
    Jian Feng, Cunzhu Tong, Yufei Zhao, Andreas Popp, Berthold Schmidt, Lijie Wang, Bo Meng, Huanyu Lu, Yanjing Wang, Xin Zhang, Lijun Wang. Wavelength-tunable multi-point pump semiconductor disk laser based on an intra-cavity transmission grating[J]. Chinese Optics Letters, 2023, 21(2): 021401
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