• DocumentCode
    912339
  • Title

    Optical pulse compression of raman-depleted picosecond pulses and spectrally windowed self-phase modulated pulses at 1.06 ¿m

  • Author

    Gomes, A.S.L. ; Gouveia-Neto, A.S. ; French, P.M.W. ; Avramopoulos, H. ; New, G.H.C. ; Taylor, J.R.

  • Author_Institution
    Imperial College of Science and Technology, Laser Optics Group, Physics Department, Blackett Laboratory, London, UK
  • Volume
    134
  • Issue
    3
  • fYear
    1987
  • fDate
    6/1/1987 12:00:00 AM
  • Firstpage
    171
  • Lastpage
    179
  • Abstract
    Two pulse-shortening schemes based on the nonlinear propagation of picosecond pulses from a Nd: YAG laser in single-mode optical fibres are described. In the first experiment, a spectral-windowing technique was employed to compress self-phase modulated pulses exiting 100 m of optical fibre, and compression factors of 2.5 were recorded in good agreement with theoretical predictions. The technique was adapted to enable the time-dependent frequency shift occurring after pulse propagation through 2 km of fibre to be measured. In the second experiment, cascaded stimulated Raman generation, occurring when a high-power pump pulse propagated in 4 m of fibre, was studied. Lower-order components in the cascade were severely depleted through generation of higher-order Stokes signals, leaving negatively chirped pulse fragments. These were compressed with a dispersion-tunable Gires-Tournois interferometer and compression ratios of times 4 were obtained.
  • Keywords
    laser beams; nonlinear optics; optical modulation; solid lasers; stimulated Raman scattering; 1.06 micron; 100 m; 2 km; 4 m; Nd:YAG laser; Raman-depleted picosecond pulses; YAG:Nd; YAl5O12:Nd; cascaded stimulated Raman generation; compression factors; dispersion-tunable Gires-Tournois interferometer; high-power pump pulse; higher-order Stokes signals; lower order components; negatively chirped pulse fragments; nonlinear propagation; optical pulse compression; pulse-shortening schemes; single-mode optical fibres; spectrally windowed self-phase modulated pulses; time-dependent frequency shift;
  • fLanguage
    English
  • Journal_Title
    Optoelectronics, IEE Proceedings J
  • Publisher
    iet
  • ISSN
    0267-3932
  • Type

    jour

  • DOI
    10.1049/ip-j:19870030
  • Filename
    4644372