• DocumentCode
    42852
  • Title

    Generation and Characterization of Phase-Stable Sub-Single-Cycle Pulses at 3000 cm ^{-1}

  • Author

    Fuji, Takao ; Nomura, Yutaka ; Shirai, Hideto

  • Author_Institution
    Inst. for Mol. Sci., Okazaki, Japan
  • Volume
    21
  • Issue
    5
  • fYear
    2015
  • fDate
    Sept.-Oct. 2015
  • Firstpage
    1
  • Lastpage
    12
  • Abstract
    This paper summarizes the generation of sub-single-cycle infrared (IR) pulses through a laser filament and the detailed properties of the generated pulses. The fundamental (ω1) and second harmonic (ω2) of 30-fs Ti:sapphire amplifier output were focused into nitrogen gas and produced phase-stable broadband IR pulses (ω0) by four-wave difference frequency generation (ω1 + ω1 - ω2 → ω0) through filamentation. The spectrum spread from 200 to 5500 cm-1, corresponding to ~3.5 octaves. The waveform of the sub-single-cycle pulse was completely characterized with the frequency-resolved optical gating capable of a carrier-envelope phase determination. The pulse duration was measured as 6.9 fs, which was 0.63 times the period of the carrier frequency, 3000 cm-1. The carrier-envelope phase of the IR pulse was passively stabilized, and the instability of the phase was estimated as 154-mrad rms over 2.5 h. We also summarize a particular behavior of the spectral phase of the sub-single-cycle pulse; the phase of high-frequency components of the generated pulses changes continuously and linearly with the relative phase between the two-color input pulses, whereas the phase of the low-frequency components takes only two discrete values. The phase behavior is a unique feature of single-cycle pulses generated with a passive carrier-envelope phase stabilization scheme.
  • Keywords
    infrared spectra; laser stability; laser variables measurement; multiwave mixing; optical focusing; optical harmonic generation; optical pulse generation; sapphire; solid lasers; titanium; Al2O3:Ti; four-wave difference frequency generation; frequency-resolved optical gating; fundamental harmonic generation; laser filament; nitrogen gas; optical focusing; passive carrier-envelope phase stabilization scheme; phase-stable sub-single-cycle infrared pulse characterization; phase-stable sub-single-cycle infrared pulse generation; second harmonic generation; time 30 fs; time 6.9 fs; titanium:sapphire amplifier output; Bandwidth; Crystals; Delays; Frequency conversion; Mirrors; Modulation; Ultrafast optics; Filamentation; filamentation; fourwave difference frequency generation; infrared; single-cycle pulse; ultrashort pulse;
  • fLanguage
    English
  • Journal_Title
    Selected Topics in Quantum Electronics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    1077-260X
  • Type

    jour

  • DOI
    10.1109/JSTQE.2015.2426415
  • Filename
    7094213