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Development and applications of multimillijoule soft X-ray lasers

  • B. Rus
  • , T. Mocek
  • , M. Kozlová
  • , J. Polan
  • , P. Homer
  • , M. Stupka
  • , G. J. Tallents
  • , M. H. Edwards
  • , P. Mistry
  • , D. S. Whittaker
  • , N. Booth
  • , Z. Zhai
  • , G. J. Pert
  • , J. Dunn
  • , A. J. Nelson
  • , M. E. Foord
  • , R. Shepherd
  • , W. Rozmus
  • , H. A. Baldis
  • , M. Fajardo
  • D. De Lazzari, P. Zeitoun, G. Jamelot, A. Klisnick, D. Ros, K. Cassou, S. Kazamias, H. Bercego, C. Danson, S. Hawkes, L. Juha, V. Hájková, J. Chalupský, J. Feldhaus, H. Wabnitz, J. Nejdl, J. Kuba, M. Davídková, A. Plavcová, V. Šstísova
  • PALS Centre
  • University of York
  • Lawrence Livermore National Laboratory
  • University of Alberta
  • University of California, Davis
  • Instituto Superior Técnico
  • Université Paris-Saclay
  • CEA-CESTA
  • Central Laser Facility
  • c/o DESY
  • Czech Technical University in Prague
  • Nuclear Physics Institute

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

7 Citations (Scopus)

Résumé

We review development of multimillijoule X-ray lasers and of applications of these new laboratory sources carried out recently at the PALS facility. A backbone of this development is the neon-like zinc laser providing saturated output at 21.2 nm, with up to 10 mJ of energy per pulse. This represents currently the most energetic soft X-ray laboratory source. Recent improvements in its operation include better control of the beam shape, and more complete understanding of the prepulse pumping. The laser at 21.2 nm has been employed for a number of application experiments reviewed in this paper. They include transmission measurements of intense soft X-ray radiation, studies of fundamental processes of soft X-ray ablation, ablation micropatterning, feasibility study of soft X-ray Thomson scattering from dense plasmas, visualization of nanometric transient perturbation of optical surfaces, measurements of ablation rates of foils heated by IR pulses, and studies of 2D plasma hydrodynamics in the regime of sequential illumination.

langue originaleAnglais
Pages (de - à)2571-2583
Nombre de pages13
journalJournal of Modern Optics
Volume54
Numéro de publication16-17
Les DOIs
étatPublié - 1 nov. 2007

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