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Decay of cystalline order and equilibration during the solid-to-plasma transition induced by 20-fs microfocused 92-eV free-electron-laser pulses

  • E. Galtier
  • , F. B. Rosmej
  • , T. Dzelzainis
  • , D. Riley
  • , F. Y. Khattak
  • , P. Heimann
  • , R. W. Lee
  • , A. J. Nelson
  • , S. M. Vinko
  • , T. Whitcher
  • , J. S. Wark
  • , T. Tschentscher
  • , S. Toleikis
  • , R. R. Fäustlin
  • , R. Sobierajski
  • , M. Jurek
  • , L. Juha
  • , J. Chalupsky
  • , V. Hajkova
  • , M. Kozlova
  • J. Krzywinski, B. Nagler
  • Sorbonne Université
  • Queen's University of Belfast
  • Kohat University of Science and Technology (KUST)
  • Ernest Orlando Lawrence Berkeley National Laboratory
  • Lawrence Livermore National Laboratory
  • University of Oxford
  • European XFEL GmbH
  • c/o DESY
  • Association EURATOM-FOM
  • Institute of Physics of the Polish Academy of Sciences
  • Institute of Physics of the Czech Academy of Sciences
  • Stanford Linear Accelerator Center

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

41 Citations (Scopus)

Résumé

We have studied a solid-to-plasma transition by irradiating Al foils with the FLASH free electron laser at intensities up to 1016W/cm2. Intense XUV self-emission shows spectral features that are consistent with emission from regions of high density, which go beyond single inner-shell photoionization of solids. Characteristic features of intrashell transitions allowed us to identify Auger heating of the electrons in the conduction band occurring immediately after the absorption of the XUV laser energy as the dominant mechanism. A simple model of a multicharge state inverse Auger effect is proposed to explain the target emission when the conduction band at solid density becomes more atomiclike as energy is transferred from the electrons to the ions. This allows one to determine, independent of plasma simulations, the electron temperature and density just after the decay of crystalline order and to characterize the early time evolution.

langue originaleAnglais
Numéro d'article164801
journalPhysical Review Letters
Volume106
Numéro de publication16
Les DOIs
étatPublié - 18 avr. 2011

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