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Gating attosecond pulses in a noncollinear geometry

  • M. Louisy
  • , C. L. Arnold
  • , M. Miranda
  • , E. W. Larsen
  • , S. N. Bengtsson
  • , D. Kroon
  • , M. Kotur
  • , D. Guénot
  • , L. Rading
  • , P. Rudawski
  • , F. Brizuela
  • , F. Campi
  • , B. Kim
  • , A. Jarnac
  • , A. Houard
  • , J. Mauritsson
  • , P. Johnsson
  • , A. L’Huillier
  • , C. M. Heyl
  • Department of Physics
  • Lund University
  • Laboratory d'Optique Appliquée, ENSTA, CNRS-École Polytechnique

Résultats de recherche: Contribution à un journalLettreRevue par des pairs

57 Citations (Scopus)

Résumé

The efficient generation of isolated attosecond pulses (IAPs), giving access to ultrafast electron dynamics in various systems, is a key challenge in attosecond science. IAPs can be produced by confining the extreme ultraviolet emission generated by an intense laser pulse to a single field half-cycle or, as shown recently, by employing angular streaking methods. Here, we experimentally demonstrate the angular streaking of attosecond pulse trains in a noncollinear geometry, leading to the emission of angularly separated IAPs. The noncollinear geometry simplifies the separation of the fundamental laser field and the generated pulses, making this scheme promising for intracavity attosecond pulse generation, thus opening new possibilities for high-repetition-rate attosecond sources.

langue originaleAnglais
Pages (de - à)563-566
Nombre de pages4
journalOptica
Volume2
Numéro de publication6
Les DOIs
étatPublié - 1 janv. 2015

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