• Chinese Journal of Lasers
  • Vol. 47, Issue 12, 1201001 (2020)
Cheng peikang, Shi Fan, Wang Teng, Pang Fufei, and Zeng Xianglong*
Author Affiliations
  • Institute for Advanced Communication and Data Science, Key Lab of Specialty Fiber Optics and Optical Access Network, Joint International Research Laboratory of Specialty Fiber Optics and Advanced Communication, Shanghai University, Shanghai 200444, China
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    DOI: 10.3788/CJL202047.1201001 Cite this Article Set citation alerts
    Cheng peikang, Shi Fan, Wang Teng, Pang Fufei, Zeng Xianglong. Fiber Mode Switchable Q-Switched Laser Based on Mode Selective Coupler[J]. Chinese Journal of Lasers, 2020, 47(12): 1201001 Copy Citation Text show less
    Experimental setup of Q-switched erbium-doped fiber laser with switchable mode
    Fig. 1. Experimental setup of Q-switched erbium-doped fiber laser with switchable mode
    Measurement of reflection peak of FM-FBG. (a) Setup used to test reflection peaks of FM-FBG. Dashed box indicates diagram of MSC; (b) measured reflection spectrum of incident broadband light with highly purified LP11 mode
    Fig. 2. Measurement of reflection peak of FM-FBG. (a) Setup used to test reflection peaks of FM-FBG. Dashed box indicates diagram of MSC; (b) measured reflection spectrum of incident broadband light with highly purified LP11 mode
    Laser outputs at 1530.5 nm. (a) Q-switched pulse trains under different pump powers; (b) output spectrum and pulse duration under pump power of 60 mW; (c) output power as a function of pump power. Inset is laser mode monitored from SMF-FBG port; (d) repetition rate and pulse duration as functions of pump power
    Fig. 3. Laser outputs at 1530.5 nm. (a) Q-switched pulse trains under different pump powers; (b) output spectrum and pulse duration under pump power of 60 mW; (c) output power as a function of pump power. Inset is laser mode monitored from SMF-FBG port; (d) repetition rate and pulse duration as functions of pump power
    Laser outputs at 1532.15 nm. (a) Q-switched pulse trains under different pump powers; (b) Q-switched pulse output spectrum at 60 mW pump power and pulse duration; (c) output power versus pump power; (d) repetition rate and pulse duration as functions of pump power; (e) donut-shaped intensity distributions of radially polarized beam after passing through polarizer and corresponding polarization states
    Fig. 4. Laser outputs at 1532.15 nm. (a) Q-switched pulse trains under different pump powers; (b) Q-switched pulse output spectrum at 60 mW pump power and pulse duration; (c) output power versus pump power; (d) repetition rate and pulse duration as functions of pump power; (e) donut-shaped intensity distributions of radially polarized beam after passing through polarizer and corresponding polarization states
    Laser dual-wavelength outputs at 1530.5 nm and 1532.15 nm. (a) Dual-wavelength Q-switched output and LP01 and LP11 modes; (b) repetition rate and pulse duration as functions of pump power; (c) Q-switched pulse trains under different pump powers
    Fig. 5. Laser dual-wavelength outputs at 1530.5 nm and 1532.15 nm. (a) Dual-wavelength Q-switched output and LP01 and LP11 modes; (b) repetition rate and pulse duration as functions of pump power; (c) Q-switched pulse trains under different pump powers
    Cheng peikang, Shi Fan, Wang Teng, Pang Fufei, Zeng Xianglong. Fiber Mode Switchable Q-Switched Laser Based on Mode Selective Coupler[J]. Chinese Journal of Lasers, 2020, 47(12): 1201001
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