• Chinese Optics Letters
  • Vol. 21, Issue 6, 063801 (2023)
Xiaomei Dong1、2, Yuhan Du2, Miaohua Xu2、*, Yutong Li3、4, Zhe Zhang3、4、**, and Yingjun Li1、***
Author Affiliations
  • 1State Key Laboratory for GeoMechanics and Deep Underground Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China
  • 2School of Science, China University of Mining and Technology (Beijing), Beijing 100089, China
  • 3Institute Key Laboratory of Optic Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China
  • 4Songshan Lake Materials Laboratory, Dongguan 523808, China
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    DOI: 10.3788/COL202321.063801 Cite this Article Set citation alerts
    Xiaomei Dong, Yuhan Du, Miaohua Xu, Yutong Li, Zhe Zhang, Yingjun Li. Effects of laser waveform on the generation of fast electrons in laser–solid interactions[J]. Chinese Optics Letters, 2023, 21(6): 063801 Copy Citation Text show less
    (a) Laser temporal profiles in three simulated cases; (b) two-dimensional profile of electron density of the target plasma.
    Fig. 1. (a) Laser temporal profiles in three simulated cases; (b) two-dimensional profile of electron density of the target plasma.
    Time-integrated energy spectra of fast electrons with three laser waveforms (a dashed line is utilized to indicate the temperature slope). The black line indicates the positive skew case. The red line indicates the Gaussian case. The blue line indicates the negative skew case.
    Fig. 2. Time-integrated energy spectra of fast electrons with three laser waveforms (a dashed line is utilized to indicate the temperature slope). The black line indicates the positive skew case. The red line indicates the Gaussian case. The blue line indicates the negative skew case.
    Phase space (X, PX) distribution of the electrons. (a) Positive skew pulses, 200 fs; (b) Gaussian pulses, 500 fs; (c) negative skew pulses, 850 fs.
    Fig. 3. Phase space (X, PX) distribution of the electrons. (a) Positive skew pulses, 200 fs; (b) Gaussian pulses, 500 fs; (c) negative skew pulses, 850 fs.
    Distribution of electrons’ longitudinal momentum when the laser peak reaches the target surface. (a) Positive skew pulses, 150 fs; (b) Gaussian pulses, 500 fs; (c) negative skew pulses, 850 fs.
    Fig. 4. Distribution of electrons’ longitudinal momentum when the laser peak reaches the target surface. (a) Positive skew pulses, 150 fs; (b) Gaussian pulses, 500 fs; (c) negative skew pulses, 850 fs.
    Evolution of the maximum longitudinal momentum at the target surface for different laser waveforms. The black square line indicates the positive skew case. The red square line indicates the Gaussian case. The blue square line indicates the negative skew case.
    Fig. 5. Evolution of the maximum longitudinal momentum at the target surface for different laser waveforms. The black square line indicates the positive skew case. The red square line indicates the Gaussian case. The blue square line indicates the negative skew case.
    Distribution of plasma density along the x direction when the laser peak reaches the front surface of the target for the different laser waveforms.
    Fig. 6. Distribution of plasma density along the x direction when the laser peak reaches the front surface of the target for the different laser waveforms.
    Time evolution of the total energy of electrons in the simulation box with different energy ranges for the three pulses. (a) For positive skew pulses; (b) for Gaussian pulses; (c) for negative skew pulses. Comparison of the energy of electrons under the three pulses. (d) For electrons with E > 500 keV; (e) for electrons with E > 1 MeV; (f) for electrons with E > 5 MeV.
    Fig. 7. Time evolution of the total energy of electrons in the simulation box with different energy ranges for the three pulses. (a) For positive skew pulses; (b) for Gaussian pulses; (c) for negative skew pulses. Comparison of the energy of electrons under the three pulses. (d) For electrons with E > 500 keV; (e) for electrons with E > 1 MeV; (f) for electrons with E > 5 MeV.
    Xiaomei Dong, Yuhan Du, Miaohua Xu, Yutong Li, Zhe Zhang, Yingjun Li. Effects of laser waveform on the generation of fast electrons in laser–solid interactions[J]. Chinese Optics Letters, 2023, 21(6): 063801
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