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X-ray Thomson scattering spectra from density functional theory molecular dynamics simulations based on a modified Chihara formula

  • Maximilian Schörner
  • , Mandy Bethkenhagen
  • , Tilo Döppner
  • , Dominik Kraus
  • , Luke B. Fletcher
  • , Siegfried H. Glenzer
  • , Ronald Redmer
  • Universität Rostock
  • Laboratoire de Géologie de Lyon : Terre, Planètes, Environnement
  • University of Freiburg
  • Lawrence Livermore National Laboratory
  • Institute of Radiooncology - OncoRay
  • Stanford Linear Accelerator Center

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

We study ab initio approaches for calculating x-ray Thomson scattering spectra from density functional theory molecular dynamics simulations based on a modified Chihara formula that expresses the inelastic contribution in terms of the dielectric function. We study the electronic dynamic structure factor computed from the Mermin dielectric function using an ab initio electron-ion collision frequency in comparison to computations using a linear-response time-dependent density functional theory (LR-TDDFT) framework for hydrogen and beryllium and investigate the dispersion of free-free and bound-free contributions to the scattering signal. A separate treatment of these contributions, where only the free-free part follows the Mermin dispersion, shows good agreement with LR-TDDFT results for ambient-density beryllium, but breaks down for highly compressed matter where the bound states become pressure ionized. LR-TDDFT is used to reanalyze x-ray Thomson scattering experiments on beryllium demonstrating strong deviations from the plasma conditions inferred with traditional analytic models at small scattering angles.

langue originaleAnglais
Numéro d'article065207
journalPhysical Review E
Volume107
Numéro de publication6
Les DOIs
étatPublié - 1 juin 2023
Modification externeOui

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