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XFEL resonant photo-pumping of dense plasmas and dynamic evolution of autoionizing core hole states

  • F. B. Rosmej
  • , A. Moinard
  • , O. Renner
  • , E. Galtier
  • , J. J. Lee
  • , B. Nagler
  • , P. A. Heimann
  • , W. Schlotter
  • , J. J. Turner
  • , R. W. Lee
  • , M. Makita
  • , D. Riley
  • , J. Seely
  • CEA/UVSQ/CNRS
  • Sorbonne Université
  • Institute of Physics of the Czech Academy of Sciences
  • Stanford Linear Accelerator Center
  • LULI
  • Centre for Plasma Physics
  • Queen's University of Belfast
  • Naval Research Laboratory

Résultats de recherche: Contribution à un journalArticle de conférenceRevue par des pairs

3 Citations (Scopus)

Résumé

Similarly to the case of LIF (Laser-Induced Fluorescence), an equally revolutionary impact to science is expected from resonant X-ray photo-pumping. It will particularly contribute to a progress in high energy density science: pumped core hole states create X-ray transitions that can escape dense matter on a 10 fs-time scale without essential photoabsorption, thus providing a unique possibility to study matter under extreme conditions. In the first proof of principle experiment at the X-ray Free Electron Laser LCLS at SCLAC [Seely, J., Rosmej, F.B., Shepherd, R., Riley, D., Lee, R.W. Proposal to Perform the 1st High Energy Density Plasma Spectroscopic Pump/Probe Experiment", approved LCLS proposal L332 (2010)] we have successfully pumped inner-shell X-ray transitions in dense plasmas. The plasma was generated with a YAG laser irradiating solid Al and Mg targets attached to a rotating cylinder. In parallel to the optical laser beam, the XFEL was focused into the plasma plume at different delay times and pump energies. Pumped X-ray transitions have been observed with a spherically bent crystal spectrometer coupled to a Princeton CCD. By using this experimental configuration, we have simultaneously achieved extremely high spectral (λ/δλ ≈ 5000) and spatial resolution (δx≈70 μm) while maintaining high luminosity and a large spectral range covered (6.90 - 8.35 Å). By precisely measuring the variations in spectra emitted from plasma under action of XFEL radiation, we have successfully demonstrated transient X- ray pumping in a dense plasma.

langue originaleAnglais
Numéro d'article012093
journalJournal of Physics: Conference Series
Volume688
Numéro de publication1
Les DOIs
étatPublié - 1 avr. 2016
Evénement8th International Conference on Inertial Fusion Sciences and Applications, IFSA 2013 - Nara, Japon
Durée: 8 sept. 201313 sept. 2013

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