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Characterization of arbitrary femtosecond pulses using frequency-resolved optical gating

IEEE Journal of Quantum Electronics · 1993 · Vol. 29(2) · pp. 571–579
Daniel J. KaneRick Trebino

Abstract

The frequency-resolved optical gating (FROG) technique for characterizing and displaying arbitrary femtosecond pulses is presented. The method is simple, general, broadband, and does not require a reference pulse. Using virtually any instantaneous nonlinear-optical effect, FROG involves measuring the spectrum of the signal pulse as a function of the delay between two input pulses. The resulting trace of intensity versus frequency and delay is related to the pulse's spectrogram a visually intuitive transform containing time and frequency information. It is proven using phase retrieval concepts that the FROG trace yields the full intensity I(t) and phase phi (t) of an arbitrary ultrashort pulse with no physically significant ambiguities. FROG appears to have temporal resolution limited only by the response of the nonlinear medium. The method is demonstrated by using self-diffraction through the electronic Kerr effect in BK-7 glass and 620-nm, linearly chirped, approximately 200-fs pulses of a few microjoules.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Laser-Matter Interactions and ApplicationsLaser Material Processing TechniquesAdvanced Fiber Laser TechnologiesFrequency-resolved optical gatingFemtosecondPhysicsOpticsUltrashort pulseSpectrogramBandwidth-limited pulsePulse (music)ChirpFemtosecond pulse shaping

Funding

  • Montana State University
  • Sandia National Laboratories
  • Los Alamos National Laboratory
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References
Phase retrieval algorithms: a comparison
Applied Optics · 1982 · 5,529 citations
Time-frequency distributions-a review
Proceedings of the IEEE · 1989 · 3,539 citations
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