• High Power Laser Science and Engineering
  • Vol. 7, Issue 1, 01000e13 (2019)
Yi Cai1, Zhenkuan Chen1, Shuiqin Zheng1、2, Qinggang Lin1, Xuanke Zeng1, Ying Li2, Jingzhen Li1, and Shixiang Xu1
Author Affiliations
  • 1Shenzhen Key Laboratory of Micro-Nano Photonic Information Technology, College of Electronic Science and Technology, Shenzhen University, Shenzhen 518060, China
  • 2International Collaborative Laboratory of 2D Materials for Optoelectronics Science and Technology, Engineering Technology Research Center for 2D Material Information Function Devices and Systems of Guangdong Province, Shenzhen University, Shenzhen 518060, China
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    DOI: 10.1017/hpl.2018.71 Cite this Article Set citation alerts
    Yi Cai, Zhenkuan Chen, Shuiqin Zheng, Qinggang Lin, Xuanke Zeng, Ying Li, Jingzhen Li, Shixiang Xu. Accurate reconstruction of electric field of ultrashort laser pulse with complete two-step phase-shifting[J]. High Power Laser Science and Engineering, 2019, 7(1): 01000e13 Copy Citation Text show less
    (a) SPIDER setup; (b) prism-based chirped-pulse-replicas generator (CG); (c) prism-based light path delayer (DL); (d) prism-based beam combiner (BC). BS1-BS3: beam splitters, $\unicode[STIX]{x1D706}/2$: half-wave plate, OPM: off-axis parabolic mirror, SP: spectrograph, RP1 and RP2: right-angle prism pair, CR1-CR4: prism-mirrors corner reflectors, PMR1-PMR4: prism-mirrors reflectors, L: lens.
    Fig. 1. (a) SPIDER setup; (b) prism-based chirped-pulse-replicas generator (CG); (c) prism-based light path delayer (DL); (d) prism-based beam combiner (BC). BS1-BS3: beam splitters, $\unicode[STIX]{x1D706}/2$: half-wave plate, OPM: off-axis parabolic mirror, SP: spectrograph, RP1 and RP2: right-angle prism pair, CR1-CR4: prism-mirrors corner reflectors, PMR1-PMR4: prism-mirrors reflectors, L: lens.
    (a) The reconstructed spectral phases by CTP-SPIDER (black line) and T-SPIDER using different filtering windows with width twin of 0.5, 0.7 and 0.9 ps (red, blue and green lines) for the reference spectrum. (b) The temporal shapes and phases corresponding to (a).
    Fig. 2. (a) The reconstructed spectral phases by CTP-SPIDER (black line) and T-SPIDER using different filtering windows with width twin of 0.5, 0.7 and 0.9 ps (red, blue and green lines) for the reference spectrum. (b) The temporal shapes and phases corresponding to (a).
    Recovered temporal intensity and phases for different pulse delays from 0.125 to 0.69 ps. The corresponding shear $\unicode[STIX]{x1D6FA}=0.5$ nm (0.95 THz). Inset: amplitudes of $\tilde{D}(t)$ and $\tilde{D}^{\text{TSPS}}(t)$ for $\unicode[STIX]{x1D70F}=0.125$ ps.
    Fig. 3. Recovered temporal intensity and phases for different pulse delays from 0.125 to 0.69 ps. The corresponding shear $\unicode[STIX]{x1D6FA}=0.5$ nm (0.95 THz). Inset: amplitudes of $\tilde{D}(t)$ and $\tilde{D}^{\text{TSPS}}(t)$ for $\unicode[STIX]{x1D70F}=0.125$ ps.
    Restore spectral phases by using different sampling resolutions of the interferograms for (a) $\unicode[STIX]{x1D70F}=1$ ps and (b) 0.3 ps when $\unicode[STIX]{x1D6FA}=0.5$ nm (0.95 THz).
    Fig. 4. Restore spectral phases by using different sampling resolutions of the interferograms for (a) $\unicode[STIX]{x1D70F}=1$ ps and (b) 0.3 ps when $\unicode[STIX]{x1D6FA}=0.5$ nm (0.95 THz).
    The measured phase errors by T-SPIDER (blue line) and CTP-SPIDER (red line).
    Fig. 5. The measured phase errors by T-SPIDER (blue line) and CTP-SPIDER (red line).
    (a) The recovered spectral phases and (b) the temporal characteristics of the laser pulses for different shears from 0.1 to 1.0 nm at $\unicode[STIX]{x1D70F}=0.43$ ps.
    Fig. 6. (a) The recovered spectral phases and (b) the temporal characteristics of the laser pulses for different shears from 0.1 to 1.0 nm at $\unicode[STIX]{x1D70F}=0.43$ ps.
    The measured pulses by three kinds of SPIDER in small shear: (a) 0.1 nm, (b) 0.25 nm, and (c) 0.35 nm.
    Fig. 7. The measured pulses by three kinds of SPIDER in small shear: (a) 0.1 nm, (b) 0.25 nm, and (c) 0.35 nm.
    Measured results of complex spectra by inducing Kerr effect.
    Fig. 8. Measured results of complex spectra by inducing Kerr effect.
    Yi Cai, Zhenkuan Chen, Shuiqin Zheng, Qinggang Lin, Xuanke Zeng, Ying Li, Jingzhen Li, Shixiang Xu. Accurate reconstruction of electric field of ultrashort laser pulse with complete two-step phase-shifting[J]. High Power Laser Science and Engineering, 2019, 7(1): 01000e13
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