The institute
FEMTO's news

Chaos and rogue waves in a supercontinuum laser

In collaboration with the Universities of Tampere, Aston and ICB laboratory, FEMTO-ST researchers have made significant headway in the ongoing effort to understand the ultrafast chaotic nature of lasers, elucidating for the first time their noise-like pulse operation.

Results appeared in Nature Communications, Sept. 22, 2021.

Lasers that emit stable ultrafast femtosecond pulses of light are widely used in technology and industry, and have also been central to fundamental Nobel Prize-winning research.  But in addition to such highly stable operation, such lasers can also be configured to produce highly unstable and irregular output, and in this case their study yields new insights into the nature of chaos, the properties of turbulence, and the emergence of giant extreme rogue waves. However, although such laser instabilities have been known for decades, their experimental study is challenging, and their origins are poorly understood.

Research published in Nature Communications has now reported a major advance in our understanding of the chaotic operation of lasers. In particular, a special class of optical fibre laser has been built to operate only in a highly chaotic regime, and this has allowed advanced experimental techniques to be used to comprehensively measure its instability characteristics. The measurements used state of the art real time methods to build a detailed picture of the laser fluctuations on multiple timescales: from random pulses with duration shorter than a picosecond (a trillionth of second) to instabilities evolving over milliseconds in the laboratory. The experiments have been complemented by a new numerical model which reveals the central role played by incoherent supercontinuum generation dynamics, a highly nonlinear process whereby an initial seed with narrow spectrum experiences massive broadening and leads to the generation of new wavelengths. The model agrees quantitatively with experiment over an optical bandwidth as broad as 1000 nm and a three-order of magnitude dynamic range, representing one of the most remarkable tests of nonlinear laser modelling ever reported.

 These findings have also shown that the supercontinuum laser generates extreme rogue wave pulses and turbulent characteristics as a consequence of unstable soliton dynamics in the cavity.  The results have answered the physical question relating to the mechanisms driving the spectral broadening and instability in such lasers, and may point to approaches to generate even broader spectral bandwidths for applications such as incoherent imaging. Possible interdisciplinary applications may include attempting to create a similarly incoherent resonator for other classes of nonlinear wave such as in hydrodynamics.

The research was performed as part of a collaboration between the Institut FEMTO-ST and the ICB Laboratory in France (CNRS and the University of Bourgogne-Franche-Comté), as well as international partners from Tampere University (Finland) and Aston University (United Kingdom).

Article: https://www.nature.com/articles/s41467-021-25861-4

  1. Meng et al. Intracavity incoherent supercontinuum dynamics and rogue waves in a broadband dissipative soliton laser. Nature Communications 12 (2021). DOI : 10.1038/s41467-021-25861-4

Contact : John Dudley

« Typical chaotic pulse emission from the supercontinuum fiber laser"

[[{"fid":"9325","view_mode":"default","fields":{"format":"default","alignment":"","field_file_image_alt_text[und][0][value]":false,"field_file_image_title_text[und][0][value]":false,"external_url":""},"type":"media","field_deltas":{"1":{"format":"default","alignment":"","field_file_image_alt_text[und][0][value]":false,"field_file_image_title_text[und][0][value]":false,"external_url":""}},"attributes":{"class":"media-element file-default","data-delta":"1"}}]]

[[{"fid":"9326","view_mode":"default","fields":{"format":"default","alignment":"","field_file_image_alt_text[und][0][value]":false,"field_file_image_title_text[und][0][value]":false,"external_url":""},"type":"media","field_deltas":{"2":{"format":"default","alignment":"","field_file_image_alt_text[und][0][value]":false,"field_file_image_title_text[und][0][value]":false,"external_url":""}},"attributes":{"class":"media-element file-default","data-delta":"2"}}]]

  • Visite ministérielle à FEMTO-ST

    Vendredi 16 mars, La ministre de l'Enseignement supérieur, de la Recherche et de l'Innovation, Frédérique VIDAL, est venue à Besançon découvrir les activités de recherche de FEMTO-ST et échanger avec les membres de l’institut.

    Read more
  • Création de la start-up VERSO Optim

    Fondée par trois membres de FEMTO-ST, la spin-off VERSO Optim propose des solutions logicielles d'optimisation efficaces dédiées aux problèmes de planification et d'optimisation dans les contextes industriels, notamment de logistique et de mobilité

    Read more
  • FEMTO-ST sur C8

    Les métamatériaux développés par FEMTO-ST pour limiter les nuisances sonores mis en avant dans l'émission "william à midi" sur C8 !!

    Read more
  • FEMTO-ST sur C8

    FEMTO-ST sur C8

    Read more
  • Métamatériau en torsion…en couverture de Science !

    Muamer Kadic, enseignant-chercheur d'UBFC au sein du l’institut FEMTO-ST, est co-auteur d’un article dans la prestigieuse revue "Science" en collaboration avec des partenaires du Karlsruhe Institute of Technology (KIT) en Allemagne.
    Leur découverte sur des métamatériaux mécaniques permettant de convertir une simple pression linéaire en un mouvement de torsion pure fait même l’objet de la couverture du journal.

    Read more
  • Concours de photo national #MoiChercheur

    Daniel Guneysu, doctorant au sein de l’équipe BioMicrodevices de FEMTO-ST participe au prochain concours photo national #MoiChercheur soumis au vote du public…Soutenez le !

    Read more
  • Solveig Perret (Optique) remporte le prix du meilleur Poster à Tampere

    Solveig Perret (département Optique) a été récompensée par le jury du "Symposium on Future Prospects for Photonics on Mid-Infrared Light Sources and Applications" qui a eu lieu à Tampere (Finlande) les 13 et 14 décembre 2017.

    Read more
  • Sabina Kuprenaite reçoit le Best Presentation Award à ISIF 2017

    Sabina Kuprenaite (département TF) vient d'être récompensée par l'award de la meilleure présentation lors d'International Symposium on Integrated Functionalities.

    Read more
  • Des chercheurs de FEMTO-ST ont fabriqué un vrai sabre laser

    A l'occasion de la sortie du 8ème épisode de STAR WARS, France Bleu Besançon diffuse une interview insolite sur les Skywalker et Kenobi de FEMTO-ST !

    Read more
  • Les experts mondiaux du domaine de l’électrification des véhicules sont réunis à Belfort

    Après Séoul, Pékin, Chicago ou encore Montréal,c’est Belfort qui accueille cette année du 11 au 14 décembre quelques 350 chercheurs & ingénieurs,experts mondiaux qui sont venus traiter des sujets liés au développement des véhicules hybrides, électriques, à hydrogène, mais aussi des questions liées à l’infrastructure de recharge de ces véhicules, et plus généralement, des questions de mobilité électrique.

    Read more