• Chinese Journal of Lasers
  • Vol. 47, Issue 5, 0508001 (2020)
Tingting Bai1、*, Gangtai Zhang2、**, Ziqi Wang2, Yifan Shang2, and Yuefeng Han2
Author Affiliations
  • 1School of Mathematics and Information Science, Baoji University of Arts and Sciences, Baoji, Shaanxi 721013, China
  • 2Institute of Physics and Optoelectronics Technology, Baoji University of Arts and Sciences, Baoji, Shaanxi 721016, China
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    DOI: 10.3788/CJL202047.0508001 Cite this Article Set citation alerts
    Tingting Bai, Gangtai Zhang, Ziqi Wang, Yifan Shang, Yuefeng Han. Isolated Ultrashort Attosecond Pulse Generation of Helium Ion in Spatially Inhomogeneous Chirped Field[J]. Chinese Journal of Lasers, 2020, 47(5): 0508001 Copy Citation Text show less
    Harmonic spectra of He+ driven by different laser fields. (a) Chirped and spatially inhomogeneous fields; (b) spatially inhomogeneous chirped field
    Fig. 1. Harmonic spectra of He+ driven by different laser fields. (a) Chirped and spatially inhomogeneous fields; (b) spatially inhomogeneous chirped field
    Harmonic spectra and emitted efficiency of the supercontinuum. (a) Harmonic spectra in the spatially inhomogeneous chirped field with different p values; (b) emitted efficiency of the supercontinuum from 240th to 1210th order as a function of p
    Fig. 2. Harmonic spectra and emitted efficiency of the supercontinuum. (a) Harmonic spectra in the spatially inhomogeneous chirped field with different p values; (b) emitted efficiency of the supercontinuum from 240th to 1210th order as a function of p
    Time-frequency distributions for the HHG spectra. (a) Single chirped field; (b) single spatially inhomogeneous field; (c) spatially inhomogeneous chirped field
    Fig. 3. Time-frequency distributions for the HHG spectra. (a) Single chirped field; (b) single spatially inhomogeneous field; (c) spatially inhomogeneous chirped field
    Temporal profiles of the attosecond pulses by superposing different order harmonics. (a) Chirped and spatially inhomogeneous fields; (b)-(d) spatially inhomogeneous chirped field
    Fig. 4. Temporal profiles of the attosecond pulses by superposing different order harmonics. (a) Chirped and spatially inhomogeneous fields; (b)-(d) spatially inhomogeneous chirped field
    Classical trajectory simulation and electric fields of the laser pulses. (a)-(c) Dependence of the harmonic order on the ionization and emission times in three light fields; (d) electric field of the laser pulse with central wavelength of 800 nm and pulse width of 5 fs; (e) electric field of the chriped laser pulse with central wavelength of 800 nm and pulse width of 5 fs
    Fig. 5. Classical trajectory simulation and electric fields of the laser pulses. (a)-(c) Dependence of the harmonic order on the ionization and emission times in three light fields; (d) electric field of the laser pulse with central wavelength of 800 nm and pulse width of 5 fs; (e) electric field of the chriped laser pulse with central wavelength of 800 nm and pulse width of 5 fs
    HHG spectrum and time-frequency distribution in the spatially inhomogeneous chirped field with t0=105 a.u.. (a) HHG spectrum; (b) time-frequency distribution
    Fig. 6. HHG spectrum and time-frequency distribution in the spatially inhomogeneous chirped field with t0=105 a.u.. (a) HHG spectrum; (b) time-frequency distribution
    Temporal profile of the attosecond pulse by superposing the harmonics from 1090th to 1450th order in the spatially inhomogeneous chirped field with t0=105 a.u.
    Fig. 7. Temporal profile of the attosecond pulse by superposing the harmonics from 1090th to 1450th order in the spatially inhomogeneous chirped field with t0=105 a.u.
    Tingting Bai, Gangtai Zhang, Ziqi Wang, Yifan Shang, Yuefeng Han. Isolated Ultrashort Attosecond Pulse Generation of Helium Ion in Spatially Inhomogeneous Chirped Field[J]. Chinese Journal of Lasers, 2020, 47(5): 0508001
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