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Multi-octave supercontinuum generation from mid-infrared filamentation in a bulk crystal

Author

Listed:
  • F. Silva

    (ICFO-Institut de Ciences Fotoniques)

  • D.R. Austin

    (ICFO-Institut de Ciences Fotoniques)

  • A. Thai

    (ICFO-Institut de Ciences Fotoniques)

  • M. Baudisch

    (ICFO-Institut de Ciences Fotoniques)

  • M. Hemmer

    (ICFO-Institut de Ciences Fotoniques)

  • D. Faccio

    (School of Engineering and Physical Sciences, Heriot-Watt University)

  • A. Couairon

    (Centre de Physique Théorique, CNRS, École Polytechnique)

  • J. Biegert

    (ICFO-Institut de Ciences Fotoniques
    ICREA—Institució Catalana de Recerca i Estudis Avançats)

Abstract

In supercontinuum generation, various propagation effects combine to produce a dramatic spectral broadening of intense ultrashort optical pulses. With a host of applications, supercontinuum sources are often required to possess a range of properties such as spectral coverage from the ultraviolet across the visible and into the infrared, shot-to-shot repeatability, high spectral energy density and an absence of complicated pulse splitting. Here we present an all-in-one solution, the first supercontinuum in a bulk homogeneous material extending from 450 nm into the mid-infrared. The spectrum spans 3.3 octaves and carries high spectral energy density (2 pJ nm−1–10 nJ nm−1), and the generation process has high shot-to-shot reproducibility and preserves the carrier-to-envelope phase. Our method, based on filamentation of femtosecond mid-infrared pulses in the anomalous dispersion regime, allows for compact new supercontinuum sources.

Suggested Citation

  • F. Silva & D.R. Austin & A. Thai & M. Baudisch & M. Hemmer & D. Faccio & A. Couairon & J. Biegert, 2012. "Multi-octave supercontinuum generation from mid-infrared filamentation in a bulk crystal," Nature Communications, Nature, vol. 3(1), pages 1-5, January.
  • Handle: RePEc:nat:natcom:v:3:y:2012:i:1:d:10.1038_ncomms1816
    DOI: 10.1038/ncomms1816
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