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Laser-guided lightning

  • Aurélien Houard
  • , Pierre Walch
  • , Thomas Produit
  • , Victor Moreno
  • , Benoit Mahieu
  • , Antonio Sunjerga
  • , Clemens Herkommer
  • , Amirhossein Mostajabi
  • , Ugo Andral
  • , Yves Bernard André
  • , Magali Lozano
  • , Laurent Bizet
  • , Malte C. Schroeder
  • , Guillaume Schimmel
  • , Michel Moret
  • , Mark Stanley
  • , W. A. Rison
  • , Oliver Maurice
  • , Bruno Esmiller
  • , Knut Michel
  • Walter Haas, Thomas Metzger, Marcos Rubinstein, Farhad Rachidi, Vernon Cooray, André Mysyrowicz, Jérôme Kasparian, Jean Pierre Wolf
  • Laboratory d'Optique Appliquée, ENSTA, CNRS-École Polytechnique
  • University of Geneva
  • Agency for Science Technology and Research (A*STAR)
  • ENAC-IIC-GEL
  • TRUMPF Scientific Lasers GmbH + Co. KG
  • New Mexico Tech
  • Centre de recherche du Bouchet
  • Swisscom Broadcast Ag
  • HES-SO
  • Uppsala University
  • Andre Mysyrowicz Consultants

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

109 Citations (Scopus)

Résumé

Lightning discharges between charged clouds and the Earth’s surface are responsible for considerable damages and casualties. It is therefore important to develop better protection methods in addition to the traditional Franklin rod. Here we present the first demonstration that laser-induced filaments—formed in the sky by short and intense laser pulses—can guide lightning discharges over considerable distances. We believe that this experimental breakthrough will lead to progress in lightning protection and lightning physics. An experimental campaign was conducted on the Säntis mountain in north-eastern Switzerland during the summer of 2021 with a high-repetition-rate terawatt laser. The guiding of an upward negative lightning leader over a distance of 50 m was recorded by two separate high-speed cameras. The guiding of negative lightning leaders by laser filaments was corroborated in three other instances by very-high-frequency interferometric measurements, and the number of X-ray bursts detected during guided lightning events greatly increased. Although this research field has been very active for more than 20 years, this is the first field-result that experimentally demonstrates lightning guided by lasers. This work paves the way for new atmospheric applications of ultrashort lasers and represents an important step forward in the development of a laser based lightning protection for airports, launchpads or large infrastructures.

langue originaleAnglais
Pages (de - à)231-235
Nombre de pages5
journalNature Photonics
Volume17
Numéro de publication3
Les DOIs
étatPublié - 1 mars 2023

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