High Power Laser and Particle Beams, Volume. 34, Issue 8, 081004(2022)

Hundred-watt level VCSEL-pumped laser with near diffraction limit beam quality

Xuepeng Li1,2, Jing Yang1,3、*, Xingwei Yan3, Zhongzheng Chen1,3, Lei Yuan1,3, Junbo Yang4, Xiaojun Wang1,3、*, Qinjun Peng1,3, and Zuyan Xu1,3
Author Affiliations
  • 1Key Laboratory of Solid State Laser, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China
  • 2University of Chinese Academy of Sciences, Beijing 100190, China
  • 3QiluZhongke Institute of Optical Physics and Engineering Technology, Jinan 250000, China
  • 4College of Liberal Arts and Sciences, National University of Defense Technology, Changsha 410073, China
  • show less
    References(22)

    [1] Ma Xiaoyu, Zhang Naling, Zhong Li, . Research progress of high power semiconductor laser pump source[J]. High Power Laser and Particle Beams, 32, 121013(2020).

    [2] Liu Fanghua, Gong Xin, Zhang Yanan, . Research progress on 808 nm VCSEL-array-pumped solid-state lasers[J]. Laser & Optoelectronics Progress, 56, 120001(2019).

    [3] [3] Seurin J F, Zhou Delai, Xu Guoyang, et al. Highefficiency VCSEL arrays f illumination sensing in consumer applications[C]Proceedings of SPIE 9766, VerticalCavity SurfaceEmitting Lasers XX. 2016: 97660D.

    [4] [4] Seurin J, Xu Guoyang, Guo Baiming, et al. Efficient verticalcavity surfaceemitting lasers f infrared illumination applications[C]Proceedings of SPIE 7952, VerticalCavity SurfaceEmitting Lasers XV. 2011: 79520G.

    [5] [5] Zhou Delai, Seurin J F, Xu Guoyang, et al. Progress on highpower 808nm VCSELs applications[C]Proceedings of SPIE 10122, VerticalCavity SurfaceEmitting Lasers XXI. 2017: 1012206.

    [6] Moser P, Hofmann W, Wolf P, et al. 81 fJ/bit energy-to-data ratio of 850 nm vertical-cavity surface-emitting lasers for optical interconnects[J]. Applied Physics Letters, 98, 231106(2011).

    [7] [7] Seurin J F, Xu Guoyang, Khalfin V, et al. Progress in highpower highefficiency VCSEL arrays[C]Proceedings of SPIE 7229, VerticalCavity SurfaceEmitting Lasers XIII. 2009: 722903.

    [8] Goldberg L, Mcintosh C, Cole B. VCSEL end-pumped passively Q-switched Nd: YAG laser with adjustable pulse energy[J]. Optics Express, 19, 4261-4267(2011).

    [9] [9] Van Leeuwen R, Xu Bing, Wang Qing, et al. Passively Qswitched VCSELpumped Nd: YAG laser with 47 mJ pulse energy[C]Proceedings of SPIE 10082, Solid State Lasers XXVI: Technology Devices. 2017: 100820L.

    [10] Chen Silu, Zhang Xin, Jiang Jing, . VCSEL side-pumped all solid-state lasers[J]. Chinese Journal of Lasers, 45, 1001001(2018).

    [11] Li Xuepeng, Zhang Xudong, Yang Jing, et al. Wavelength-stable 1.1-kW diode laser array cooled by liquid metal[J]. IEEE Photonics Technology Letters, 32, 434-437(2020).

    [12] Di Pengcheng, Li Xuepeng, Yang Jing, et al. High-power VCSEL-pumped slab laser with temperature fluctuation adaptability[J]. IEEE Photonics Technology Letters, 33, 395-398(2021).

    [13] Wang Chao, Wei Hui, Jiang Youen, et al. VCSEL-pumped Nd: YAG laser with 95 W average power and user-selectable nanosecond pulses[J]. Chinese Optics Letters, 14, 121402(2016).

    [14] [14] Van Leeuwen R, Xiong Yihan, Seurin J F, et al. Highpower verticalcavity surfaceemitting lasers f diode pumped solidstate lasers[C]Proceedings of SPIE 8381, Laser Technology f Defense Security VIII. 2012: 83810I.

    [15] Zhang Xudong, Li Xuepeng, Zhou Yixin, et al. Vascularized liquid metal cooling for thermal management of kW high power laser diode array[J]. Applied Thermal Engineering, 162, 114212(2019).

    [16] [16] Di Pengcheng. Researches on novel wavefront detection VCSELpumped slab laser technology[D]. Beijing: University of Chinese Academy of Sciences, 2021: 8690

    [17] Furuta K, Kojima T, Fujikawa S, et al. Diode-pumped 1 kW Q-switched Nd: YAG rod laser with high peak power and high beam quality[J]. Applied Optics, 44, 4119-4122(2005).

    [18] [18] Kozeki T, Sakashita M, Miura T, et al. Development of cwdiode pumped amplifier f over 1kWaveragepower solidstate laser system[C]Proceedings of the Conference Lasers ElectroOptics. 2005: 162164.

    [19] Xiao Hong, Zhao Tianzhuo, Fan Zhongwei, . Pump design of large-diameter axial non-uniform Nd: YAG crystal[J]. Chinese Journal of Lasers, 42, 0602002(2015).

    [20] Hanna D C, Sawyers C G, Yuratich M A. Telescopic resonators for large-volume TEM00-mode operation[J]. Optical and Quantum Electronics, 13, 493-507(1981).

    [21] [21] Feng Yan, Bi Yong, Xu Zuyan, et al. Thermally nearunstable cavity design f solid state lasers[C]Proceedings of SPIE 4969, Laser Resonats Beam Control VI. 2003: 227232.

    [22] [22] Koechner W. Solidstate laser engineering[M]. 6th ed. New Yk: Springer, 2006: 102127.

    CLP Journals

    [1] Tianli Yang, Jing Yang, Wangzhe Zhou, Xuepeng Li, Xiaojun Wang, Qinjun Peng. 100 kHz high power high beam quality nanosecond laser oscillator[J]. High Power Laser and Particle Beams, 2023, 35(7): 071006

    Tools

    Get Citation

    Copy Citation Text

    Xuepeng Li, Jing Yang, Xingwei Yan, Zhongzheng Chen, Lei Yuan, Junbo Yang, Xiaojun Wang, Qinjun Peng, Zuyan Xu. Hundred-watt level VCSEL-pumped laser with near diffraction limit beam quality[J]. High Power Laser and Particle Beams, 2022, 34(8): 081004

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: High Power Laser Physics and Technology

    Received: Mar. 21, 2022

    Accepted: --

    Published Online: Aug. 8, 2022

    The Author Email: Jing Yang (yangjing@mail.ipc.ac.cn), Xiaojun Wang (wangxj@mail.ipc.ac.cn)

    DOI:10.11884/HPLPB202234.220078

    Topics