Chinese Journal of Lasers, Volume. 44, Issue 5, 506002(2017)

Fiber Laser Simulation Software See Fiber Laser and Fiber Laser Tool Collection SFTool

Wang Xiaolin1、*, Lü Pin2, Zhang Hanwei1, Tan Shudan2, Xiao Hu1, Duan Lei2, Song Yunbo2, Tao Rumao1, Shi Chen1, Zhou Yufeng3, Ma Pengfei1, Su Rongtao1, Zhou Pu1, Xu Xiaojun1, and Xu Fanjiang2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    References(21)

    [1] [1] Stark M. Over 50 percent wall-plug efficiency fiber laser[J]. Laser Technik Journal, 2016, 13(2): 14-16.

    [2] [2] Zervas M N, Codemard C A. High power fiber lasers: A review[J]. IEEE Journal of Selected Topics in Quantum Electronics, 2014, 20(5): 1-23.

    [3] [3] Richardson D J, Nilsson J, Clarkson W A. High power fiber lasers: Current status and future perspectives[J]. J Opt Soc Am B, 2010, 27(11): B63-B92.

    [4] [4] Zervas M N. High power ytterbium-doped fiber lasers - fundamentals and applications[J]. International Journal of Modern Physics B, 2014, 28(12): 1442009.

    [5] [5] IPG Photonics Corporation. IPG photonics successfully tests world′s first 10 kilowatt single-mode production laser[EB/OL]. (2009-6-16)[2017-01-20]. http://www.ipgphotonics.com/Collateral/Documents/English-US/PR_Final_10 kW_SM_laser.pdf.

    [6] [6] Liu Chaoping, Liao Lei, Li Jinyan. Research progress on photodarkening of Yb-doped fiber lasers[J]. Laser & Optoelectronics Progress, 2016, 53(7): 070002.

    [7] [7] Xu S H, Yang Z M, Zhang W N, et al. 400 mW ultrashort cavity low-noise single-frequency Yb3+-doped phosphate fiber laser[J]. Optics Letters, 2011, 36(18): 3708-3710.

    [8] [8] Wang Xiaolin, Zhang Hanwei, Tao Rumao, et al. Laser diode pumped 4.1 kilowatt fiber laser with master oscillator power amplification configuration[J]. Chinese J Lasers, 2016, 43(5): 0502002.

    [9] [9] Zheng Y Z, Yang Y F, Wang J H, et al. 10.8 kW spectral beam combination of eight all-fiber superfluorescent sources and their dispersion compensation[J]. Optics Express, 2016, 24(11): 12063-12071.

    [10] [10] Ke W W, Wang X J, Bao X F, et al. Thermally induced mode distortion and its limit to power scaling of fiber lasers[J]. Optics Express, 2013, 21(12): 14272-14281.

    [11] [11] Hemming A, Richards J, Simakov N, et al. Pulsed operation of a resonantly pumped, linearly polarised, large mode area holmium-doped fibre amplifier[J]. Optics Express, 2014, 22(6): 7186-7193.

    [12] [12] Wang J M, Yang D P, Xiong S S, et al. High power all-fiber amplifier with different seed power injection[J]. Optics Express, 2016, 26(13): 14463-14469.

    [13] [13] Ran Yang, Wang Xiaolin, Lü Haibin, et al. Novel suppression method study for stimulated Brillouin scattering by simultaneous phase and intensity modulation in fiber amplifiers[J]. Chinese J Lasers, 2015, 42(8): 0805001.

    [14] [14] Ran Y, Su R T, Ma P F, et al. 293 W, GHz narrow-linewidth, polarization maintaining nanosecond fiber amplifier with SBS suppression employing simultaneous phase and intensity modulation[J]. Optics Express, 2015, 23(20): 25896-25905.

    [15] [15] Boyd R W, Rzaewski K, Narum P. Noise initiation of stimulated Brillouin scattering[J]. Physics Review A, 1990, 42(9): 5514-5521.

    [16] [16] Mungan C E, Rogers S D, Satyan N. Time-dependent modeling of Brillouin scattering in optical fibers excited by a chirped diode laser[J]. IEEE Journal of Quantum Electronics, 2012, 48(12): 1542-1546.

    [18] [18] Yu H Y, Zhang H W, Lü H B, et al. 3.15 kW direct diode-pumped near diffraction-limited all-fiber-integrated fiber laser[J]. Applied Optics, 2015, 54(14): 4556-4560.

    [19] [19] Tao R M, Ma P F, Wang X L, et al. Comparison of the threshold of thermal-induced mode instabilities in polarization-maintaining and non-polarization-maintaining active fibers[J]. Journal of Optics, 2016, 18(6): 65501-65509.

    [20] [20] Tao R M, Ma P F, Wang X L, et al. 1.3 kW monolithic linearly polarized single-mode master oscillator power amplifier and strategies for mitigating mode instabilities[J]. Photonics Research, 2015, 3(5): 86-93.

    [21] [21] Tao Rumao. Study of thermal-induced modal instabilities in high power narrow-linewidth fiber amplifiers with near diffraction-limited beam quality[D]. Changsha: National University of Defense Technology, 2015.

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    Wang Xiaolin, Lü Pin, Zhang Hanwei, Tan Shudan, Xiao Hu, Duan Lei, Song Yunbo, Tao Rumao, Shi Chen, Zhou Yufeng, Ma Pengfei, Su Rongtao, Zhou Pu, Xu Xiaojun, Xu Fanjiang. Fiber Laser Simulation Software See Fiber Laser and Fiber Laser Tool Collection SFTool[J]. Chinese Journal of Lasers, 2017, 44(5): 506002

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    Paper Information

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    Received: Jan. 16, 2017

    Accepted: --

    Published Online: May. 3, 2017

    The Author Email: Xiaolin Wang (chinaphotonics@163.com)

    DOI:10.3788/cjl201744.0506002

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