Volume 33 Issue 9
Sep.  2021
Turn off MathJax
Article Contents
He Lin’an, Zhou Kun, Zhang Liang, et al. Fabrication of high-power semiconductor laser with wavelength-locked at 780 nm[J]. High Power Laser and Particle Beams, 2021, 33: 091001. doi: 10.11884/HPLPB202133.210099
Citation: He Lin’an, Zhou Kun, Zhang Liang, et al. Fabrication of high-power semiconductor laser with wavelength-locked at 780 nm[J]. High Power Laser and Particle Beams, 2021, 33: 091001. doi: 10.11884/HPLPB202133.210099

Fabrication of high-power semiconductor laser with wavelength-locked at 780 nm

doi: 10.11884/HPLPB202133.210099
  • Received Date: 2021-03-21
  • Rev Recd Date: 2021-08-18
  • Available Online: 2021-09-06
  • Publish Date: 2021-09-15
  • A short wavelength of 780 nm semiconductor laser has been designed and fabricated, and the mode locking by external cavity feedback has been studied. The epitaxial layers were prepared by the metal organic chemical vapor deposition technology. GaAsP and GaInP were used as the quantum well and waveguide layer, respectively. The confinement layers were AlGaInP material with low refractive index. Using the ultra-high vacuum cleavage and passivation technology, an amorphous ZnSe passivation layer was deposited on the laser cavity facets. For the original device the catastrophic optical damage (COD) occurred when the output power was 2.5 W. The ZnSe passivated device did not show COD phenomenon until 10.1 W. When the current was 10 A, the output power was 10.1 W, and the electro-optical conversion efficiency was 54%. Before and after the wavelength being locked by the volume Bragg grating (VBG), the full width at half maximum of the spectrum were 2.6 nm and 0.06 nm, respectively, and the wavelength range was about 230 pm through controlling the temperature of VBG.
  • loading
  • [1]
    Rotondaro M D, Zhdanov B V, Shaffer M K, et al. Narrowband diode laser pump module for pumping alkali vapors[J]. Optics Express, 2018, 26(8): 9792-9797. doi: 10.1364/OE.26.009792
    [2]
    Koenning T, McCormick D, Irwin D, et al. DPAL pump system exceeding 3kW at 766nm and 30 GHz bandwidth[C]//Proceedings of SPIE 9733, High-Power Diode Laser Technology and Applications XIV. 2016: 97330E.
    [3]
    Vinokurov D A, Zorina S A, Kapitonov V A, et al. MOCVD GaInAsP/GaInP/AlGaInP laser structures emitting at 780 nm[J]. Semiconductors, 2003, 37(12): 1421-1424. doi: 10.1134/1.1634665
    [4]
    Moulton P F, Rines G A, Slobodtchikov E V, et al. Tm-doped fiber lasers: fundamentals and power scaling[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2009, 15(1): 85-92. doi: 10.1109/JSTQE.2008.2010719
    [5]
    Pitz G A, Anderson M D. Recent advances in optically pumped alkali lasers[J]. Applied Physics Reviews, 2017, 4: 041101. doi: 10.1063/1.5006913
    [6]
    Keaveney J, Hamlyn W J, Adams C S, et al. A single-mode external cavity diode laser using an intra-cavity atomic Faraday filter with short-term linewidth < 400 kHz and long-term stability of < 1 MHz[J]. Review of Scientific Instruments, 2016, 87: 095111. doi: 10.1063/1.4963230
    [7]
    Hempel M, Tomm J W, Ziegler M, et al. Catastrophic optical damage at front and rear facets of diode lasers[J]. Applied Physics Letters, 2010, 97: 231101. doi: 10.1063/1.3524235
    [8]
    Sanayeh M B, Brick P, Schmid W, et al. The physics of catastrophic optical damage in high-power AlGaInP laser diodes[C]//Proceedings of SPIE 6997, Semiconductor Lasers and Laser Dynamics III. 2008: 699703.
    [9]
    Christopher H, Kovalchuk E V, Wenzel H, et al. Comparison of symmetric and asymmetric double quantum well extended-cavity diode lasers for broadband passive mode-locking at 780 nm[J]. Applied Optics, 2017, 56(19): 5566-5572. doi: 10.1364/AO.56.005566
    [10]
    Sanayeh M B, Brick P, Schmid W, et al. Temperature-power dependence of catastrophic optical damage in AlGaInP laser diodes[J]. Applied Physics Letters, 2007, 91: 041115. doi: 10.1063/1.2760143
    [11]
    朱振, 肖成峰, 夏伟, 等. 大功率640 nm红光半导体激光器的设计及制备[J]. 激光与光电子学进展, 2018, 55:081403. (Zhu Zhen, Xiao Chengfeng, Xia Wei, et al. Design and fabrication of high power 640 nm red laser diodes[J]. Laser & Optoelectronics Progress, 2018, 55: 081403
    [12]
    Bao Ling, Wang Jun, Devito M, et al. Performance and reliability of high power 7xx nm laser diodes[C]//Proceedings of SPIE 7953, Novel In-Plane Semiconductor Lasers X. 2011: 79531B.
    [13]
    Liu Guoli, Lehkonen S, Li Jingwei, et al. High power and reliable 793nm single emitter and T-bar for thulium-doped fiber laser pumping[C]//Proceedings of SPIE 11262, High-Power Diode Laser Technology XVIII. 2020: 1126208.
    [14]
    Crump P, Wilkens M, Hübner M, et al. Efficient, high power 780 nm pumps for high energy class mid-infrared solid state lasers[C]//Proceedings of SPIE 11262, High-Power Diode Laser Technology XVIII. 2020: 1126204.
    [15]
    田景玉, 张俊, 彭航宇, 等. 用于碱金属蒸汽激光器泵浦的窄线宽780 nm半导体激光源[J]. 发光学报, 2019, 40(9):1123-1129. (Tian Jingyu, Zhang Jun, Peng Hangyu, et al. 780 nm diode laser source with narrow linewidth for alkali metal vapor laser pumping[J]. Chinese Journal of Luminescence, 2019, 40(9): 1123-1129 doi: 10.3788/fgxb20194009.1123
    [16]
    Ressel P, Erbert G, Zeimer U, et al. Novel passivation process for the mirror facets of Al-free active-region high-power semiconductor diode lasers[J]. IEEE Photonics Technology Letters, 2005, 17(5): 962-964. doi: 10.1109/LPT.2005.846750
    [17]
    Koenning T, McCormick D, Irvin D, et al. Narrow-line fiber-coupled modules for DPAL pumping[C]//Proceedings of SPIE 9348, High-Power Diode Laser Technology and Applications XIII. 2015: 934805.
    [18]
    李志永, 谭荣清, 徐程, 等. 用于铷蒸气激光泵浦的窄线宽阵列半导体激光器[J]. 强激光与粒子束, 2013, 25(4):875-878. (Li Zhiyong, Tan Rongqing, Xu Cheng, et al. Laser doide array with narrow linewidth for rubidium vapor laser pumping[J]. High Power Laser and Particle Beams, 2013, 25(4): 875-878 doi: 10.3788/HPLPB20132504.0875
    [19]
    Venus G B, Sevian A, Smirnov V I, et al. High-brightness narrow-line laser diode source with volume Bragg-grating feedback[C]//Proceedings of SPIE 5711, High-Power Diode Laser Technology and Applications III. 2005.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Figures(5)

    Article views (1149) PDF downloads(111) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return