• Infrared and Laser Engineering
  • Vol. 51, Issue 7, 20210618 (2022)
Bing Wen1,2, Yangbao Deng1,*, Jiamou Wei2, Saiwen Zhang1..., Depeng Chen1, Shuguang Deng1 and Guangfu Zhang1|Show fewer author(s)
Author Affiliations
  • 1All-solid-state Energy Storage Materials and Devices Key Laboratory of Hunan Province, College of Information and Electronic Engineering, Hunan City University, Yiyang 413000, China
  • 2Key Laboratory for Micro-/Nano-Optoelectronic Devices of Ministry of Education, School of Physics and Electronics, Hunan University, Changsha 410082, China
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    DOI: 10.3788/IRLA20210618 Cite this Article
    Bing Wen, Yangbao Deng, Jiamou Wei, Saiwen Zhang, Depeng Chen, Shuguang Deng, Guangfu Zhang. Supercontinuum generation and manipulation of cosh-Airy pulse in double-zero dispersion medium[J]. Infrared and Laser Engineering, 2022, 51(7): 20210618 Copy Citation Text show less
    (a) Dispersion distribution curve, (b) Relative group delay curve of the double-zero dispersive media
    Fig. 1. (a) Dispersion distribution curve, (b) Relative group delay curve of the double-zero dispersive media
    (a) Waveform and (b) spectrum of cosh-Airy pulses with different sectional factors χ0
    Fig. 2. (a) Waveform and (b) spectrum of cosh-Airy pulses with different sectional factors χ0
    Waveform (left column) and spectrum (right column) of cosh-Airy pulses at different distances in a double-zero dispersion medium
    Fig. 3. Waveform (left column) and spectrum (right column) of cosh-Airy pulses at different distances in a double-zero dispersion medium
    For P0=5 kW, C=0 and χ0=0.15, temporal and spectral evolutions of cosh-Airy pulses with different truncation coefficient propagated in a double-zero dispersion media. (a1)-(a2) a=0.2, (c1)-(c2) a=0.35, (d1)-(d2) a=0.5, (d1)-(d2) at propagation distance z =0.4 m, the corresponding waveform and spectrum distributions for a=0.2 (blue line), a=0.35 (red line) and a=0.5 (green line)
    Fig. 4. For P0=5 kW, C=0 and χ0=0.15, temporal and spectral evolutions of cosh-Airy pulses with different truncation coefficient propagated in a double-zero dispersion media. (a1)-(a2) a=0.2, (c1)-(c2) a=0.35, (d1)-(d2) a=0.5, (d1)-(d2) at propagation distance z =0.4 m, the corresponding waveform and spectrum distributions for a=0.2 (blue line), a=0.35 (red line) and a=0.5 (green line)
    For P0=5 kW, a=0.1 and χ0=0.03, temporal and spectral evolutions of cosh-Airy pulses with different initial chirp propagate in a double-zero dispersion media. (a1)-(a2) C=−0.3, (b1)-(b2) C=0, (c1)-(c2) C=0.3; (d1)-(d2) at propagation distance z =0.4 m, the corresponding waveform and spectrum distributions for C=−0.3 (blue line), C=0 (red line) and C=0.3 (green line)
    Fig. 5. For P0=5 kW, a=0.1 and χ0=0.03, temporal and spectral evolutions of cosh-Airy pulses with different initial chirp propagate in a double-zero dispersion media. (a1)-(a2) C=−0.3, (b1)-(b2) C=0, (c1)-(c2) C=0.3; (d1)-(d2) at propagation distance z =0.4 m, the corresponding waveform and spectrum distributions for C=−0.3 (blue line), C=0 (red line) and C=0.3 (green line)
    For P0=5 kW, a=0.5 and C=0, temporal and spectral evolutions of cosh-Airy pulses with different sectional factor propagated in a double-zero dispersion media. (a1)-(a2) χ0=0.05, (b1)-(b2) χ0=0.25, (c1)-(c2) χ0=0.45; (d1)-(d2) at propagation distance z =0.4 m, the corresponding waveform and spectrum distributions for χ0=0.05 (blue line), χ0=0.25 (red line) and χ0=0.45 (green line)
    Fig. 6. For P0=5 kW, a=0.5 and C=0, temporal and spectral evolutions of cosh-Airy pulses with different sectional factor propagated in a double-zero dispersion media. (a1)-(a2) χ0=0.05, (b1)-(b2) χ0=0.25, (c1)-(c2) χ0=0.45; (d1)-(d2) at propagation distance z =0.4 m, the corresponding waveform and spectrum distributions for χ0=0.05 (blue line), χ0=0.25 (red line) and χ0=0.45 (green line)
    Effects of (a) truncation coefficient, (b) initial chirp and (c) sectional factor on the width of supercontinuum in double-zero dispersion media
    Fig. 7. Effects of (a) truncation coefficient, (b) initial chirp and (c) sectional factor on the width of supercontinuum in double-zero dispersion media
    For P0=5 kW, a=0.5, χ0=0.45 and C=0, temporal and spectral evolutions of cosh-Airy pulses propagate in double zero dispersion medium at different conditions: (a1)-(a2) self-phase modulation, (b1)-(b2) self-phase modulation and stimulated Raman scattering, (c1)-(c2) self-phase modulation, stimulated Raman scattering and self-steepening
    Fig. 8. For P0=5 kW, a=0.5, χ0=0.45 and C=0, temporal and spectral evolutions of cosh-Airy pulses propagate in double zero dispersion medium at different conditions: (a1)-(a2) self-phase modulation, (b1)-(b2) self-phase modulation and stimulated Raman scattering, (c1)-(c2) self-phase modulation, stimulated Raman scattering and self-steepening
    Bing Wen, Yangbao Deng, Jiamou Wei, Saiwen Zhang, Depeng Chen, Shuguang Deng, Guangfu Zhang. Supercontinuum generation and manipulation of cosh-Airy pulse in double-zero dispersion medium[J]. Infrared and Laser Engineering, 2022, 51(7): 20210618
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