• High Power Laser Science and Engineering
  • Vol. 11, Issue 2, 02000e25 (2023)
Tao Wang, Can Li*, Bo Ren, Kun Guo, Jian Wu, Jinyong Leng, and Pu Zhou*
Author Affiliations
  • College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha, China
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    DOI: 10.1017/hpl.2023.12 Cite this Article Set citation alerts
    Tao Wang, Can Li, Bo Ren, Kun Guo, Jian Wu, Jinyong Leng, Pu Zhou. High-power femtosecond laser generation from an all-fiber linearly polarized chirped pulse amplifier[J]. High Power Laser Science and Engineering, 2023, 11(2): 02000e25 Copy Citation Text show less
    Experimental setup of the high-power linearly polarized CPA system. ISO, isolator; Cir, circulator; CFBG, chirped fiber Bragg grating; LD, laser diode; WDM, wavelength division multiplexer; PM YDF, polarization-maintaining Yb-doped fiber; CO, collimator.
    Fig. 1. Experimental setup of the high-power linearly polarized CPA system. ISO, isolator; Cir, circulator; CFBG, chirped fiber Bragg grating; LD, laser diode; WDM, wavelength division multiplexer; PM YDF, polarization-maintaining Yb-doped fiber; CO, collimator.
    The laser properties of the seed pulse: (a) output spectrum; (b) pulse train.
    Fig. 2. The laser properties of the seed pulse: (a) output spectrum; (b) pulse train.
    (a) Output spectrum after two cascaded CFBGs. (b) Pulse waveforms after the two cascaded CFBGs, pre-amplifier 1 and pre-amplifier 2.
    Fig. 3. (a) Output spectrum after two cascaded CFBGs. (b) Pulse waveforms after the two cascaded CFBGs, pre-amplifier 1 and pre-amplifier 2.
    Output characteristics of the main amplifier: (a) average power and single pulse energy as a function of the pump power; (b) output spectra at selected output power; inset: linear-scale spectrum at the highest power; (c) pulse waveform at the highest power; (d) evolution of the polarization degree with the enhancement of the output power.
    Fig. 4. Output characteristics of the main amplifier: (a) average power and single pulse energy as a function of the pump power; (b) output spectra at selected output power; inset: linear-scale spectrum at the highest power; (c) pulse waveform at the highest power; (d) evolution of the polarization degree with the enhancement of the output power.
    (a) Beam quality of the main amplifier at the selected operating power; (b) M2 factor at the output power of 612 W.
    Fig. 5. (a) Beam quality of the main amplifier at the selected operating power; (b) M2 factor at the output power of 612 W.
    Autocorrelation traces of the compressed pulse at the highest output power (a) without and (b) with fine adjusting of the higher-order dispersion of the CFBG.
    Fig. 6. Autocorrelation traces of the compressed pulse at the highest output power (a) without and (b) with fine adjusting of the higher-order dispersion of the CFBG.
    Tao Wang, Can Li, Bo Ren, Kun Guo, Jian Wu, Jinyong Leng, Pu Zhou. High-power femtosecond laser generation from an all-fiber linearly polarized chirped pulse amplifier[J]. High Power Laser Science and Engineering, 2023, 11(2): 02000e25
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