• Chinese Optics Letters
  • Vol. 20, Issue 10, 100006 (2022)
Youming Liu, Bowen Liu, Youjian Song*, and Minglie Hu**
Author Affiliations
  • Ultrafast Laser Laboratory, Key Laboratory of Opto-electronic Information Science and Technology of Ministry of Education, School of Precision Instruments and Opto-electronics Engineering, , Tianjin 300072, China
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    DOI: 10.3788/COL202220.100006 Cite this Article Set citation alerts
    Youming Liu, Bowen Liu, Youjian Song, Minglie Hu. Sub-30 fs Yb-fiber laser source based on a hybrid cascaded nonlinear compression approach[J]. Chinese Optics Letters, 2022, 20(10): 100006 Copy Citation Text show less
    Schematic of the experimental setup showing the two compression stages. F1–F4, lenses; M1, M2, reflective mirrors; CM1–CM4, chirped mirrors; HWP, half-wave plate; PBS, polarizing beam splitter. The right inset shows the autocorrelation trace of the laser source; the left inset in the setup represents the scanning electron micrograph of the HC-PCF with a core diameter of 68 µm and a wall thickness of ∼0.3 µm.
    Fig. 1. Schematic of the experimental setup showing the two compression stages. F1–F4, lenses; M1, M2, reflective mirrors; CM1–CM4, chirped mirrors; HWP, half-wave plate; PBS, polarizing beam splitter. The right inset shows the autocorrelation trace of the laser source; the left inset in the setup represents the scanning electron micrograph of the HC-PCF with a core diameter of 68 µm and a wall thickness of ∼0.3 µm.
    Diagnosis results of the first stage. (a) Spectral broadening in log scale with different numbers of plates in the first stage; the inset is the beam profile after the iris. (b) Intensity autocorrelation trace after phase compensation in the first stage; (c) retrieved temporal intensity envelope and phase after phase compensation in the first stage by PICASO algorithm and the TL pulse.
    Fig. 2. Diagnosis results of the first stage. (a) Spectral broadening in log scale with different numbers of plates in the first stage; the inset is the beam profile after the iris. (b) Intensity autocorrelation trace after phase compensation in the first stage; (c) retrieved temporal intensity envelope and phase after phase compensation in the first stage by PICASO algorithm and the TL pulse.
    (a) Simulated spectral evolutions in the 45-cm-long HC-PCF; (b) experimental and simulated spectral outputs are compared. The red line indicates the GVD.
    Fig. 3. (a) Simulated spectral evolutions in the 45-cm-long HC-PCF; (b) experimental and simulated spectral outputs are compared. The red line indicates the GVD.
    (a) Intensity autocorrelation trace of the 1.6 µJ pulses after phase compensation in the second stage; (b) retrieved temporal intensity envelope and phase of the 1.6 µJ pulses after phase compensation in the second stage by PICASO algorithm and the TL pulse.
    Fig. 4. (a) Intensity autocorrelation trace of the 1.6 µJ pulses after phase compensation in the second stage; (b) retrieved temporal intensity envelope and phase of the 1.6 µJ pulses after phase compensation in the second stage by PICASO algorithm and the TL pulse.
    Intensity autocorrelation trace of the 2 µJ pulses after phase compensation in the second stage.
    Fig. 5. Intensity autocorrelation trace of the 2 µJ pulses after phase compensation in the second stage.
    Youming Liu, Bowen Liu, Youjian Song, Minglie Hu. Sub-30 fs Yb-fiber laser source based on a hybrid cascaded nonlinear compression approach[J]. Chinese Optics Letters, 2022, 20(10): 100006
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