• Chinese Optics Letters
  • Vol. 22, Issue 10, 101403 (2024)
Xueyu Yang1,2, Chenyue Lü1,2, Baole Lu1,2,*, and Jintao Bai1,2,**
Author Affiliations
  • 1State Key Laboratory of Energy Photon-Technology in Western China, International Collaborative Center on Photoelectric Technology and Nano Functional Materials, Institute of Photonics & Photon-Technology, Northwest University, Xi’an 710127, China
  • 2Shaanxi Engineering Technology Research Center for Solid State Lasers and Application, Shaanxi Provincial Key Laboratory of Photo-electronic Technology, Northwest University, Xi’an 710127, China
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    DOI: 10.3788/COL202422.101403 Cite this Article Set citation alerts
    Xueyu Yang, Chenyue Lü, Baole Lu, Jintao Bai, "Dynamics of different pulse types in a single-/dual-wavelength mode-locked fiber laser," Chin. Opt. Lett. 22, 101403 (2024) Copy Citation Text show less
    Schematic setup. (a) The mode-locked fiber laser with NALM. (b) The TS-DFT detection system.
    Fig. 1. Schematic setup. (a) The mode-locked fiber laser with NALM. (b) The TS-DFT detection system.
    Single-wavelength. (a) The spectrum of the DS in the logarithmic and linear scales. (b) The spectrum of NLP in the logarithmic and linear scales.
    Fig. 2. Single-wavelength. (a) The spectrum of the DS in the logarithmic and linear scales. (b) The spectrum of NLP in the logarithmic and linear scales.
    DS and NLP characteristics. (a) DS to NLP shot-to-shot spectra. (b) RF spectrum and autocorrelation trace of the DS. (c), (d) RF spectrum and autocorrelation trace of the NLP. (e) NLP to DS shot-to-shot spectra. (f)–(h) Close-ups of regions 2, 3, and 4 in (e).
    Fig. 3. DS and NLP characteristics. (a) DS to NLP shot-to-shot spectra. (b) RF spectrum and autocorrelation trace of the DS. (c), (d) RF spectrum and autocorrelation trace of the NLP. (e) NLP to DS shot-to-shot spectra. (f)–(h) Close-ups of regions 2, 3, and 4 in (e).
    Typical single-shot spectra. (a) DS to NLP. (b) NLP to DS.
    Fig. 4. Typical single-shot spectra. (a) DS to NLP. (b) NLP to DS.
    Dual-wavelength. (a) The spectrum of the dual-NLP in the logarithmic and linear scales. (b) The spectrum of the NLP-DS in the logarithmic and linear scales. (c) The spectrum of the dual-DS in the logarithmic and linear scales.
    Fig. 5. Dual-wavelength. (a) The spectrum of the dual-NLP in the logarithmic and linear scales. (b) The spectrum of the NLP-DS in the logarithmic and linear scales. (c) The spectrum of the dual-DS in the logarithmic and linear scales.
    Dual-color pulse characteristics. (a)–(d) The shot-to-shot spectra, pulse trains, RF spectrum, and autocorrelation trace of the dual-NLP. (e)–(h) The shot-to-shot spectra, pulse trains, RF spectrum, and autocorrelation trace of the NLP-DS. (i)–(l) The shot-to-shot spectra, pulse trains, RF spectrum, and autocorrelation trace of the dual-DS.
    Fig. 6. Dual-color pulse characteristics. (a)–(d) The shot-to-shot spectra, pulse trains, RF spectrum, and autocorrelation trace of the dual-NLP. (e)–(h) The shot-to-shot spectra, pulse trains, RF spectrum, and autocorrelation trace of the NLP-DS. (i)–(l) The shot-to-shot spectra, pulse trains, RF spectrum, and autocorrelation trace of the dual-DS.
    Typical single-shot spectra for collision and spectral reconstruction. (a)–(c) Dual-NLP, NLP-DS, and dual-DS collision processes. (d)–(f) Dual-NLP, NLP-DS, and dual-DS spectral reconstruction processes.
    Fig. 7. Typical single-shot spectra for collision and spectral reconstruction. (a)–(c) Dual-NLP, NLP-DS, and dual-DS collision processes. (d)–(f) Dual-NLP, NLP-DS, and dual-DS spectral reconstruction processes.
    Close-ups of regions of two collisions of dual-color pulses and typical single-shot spectra.
    Fig. 8. Close-ups of regions of two collisions of dual-color pulses and typical single-shot spectra.
    Xueyu Yang, Chenyue Lü, Baole Lu, Jintao Bai, "Dynamics of different pulse types in a single-/dual-wavelength mode-locked fiber laser," Chin. Opt. Lett. 22, 101403 (2024)
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