Improving dynamic collision frequencies: Impacts on dynamic structure factors and stopping powers in warm dense matter

Simulations and diagnostics of high-energy-density plasmas and warm dense matter rely on models of material response properties, both static and dynamic (frequency-dependent). Here, we systematically investigate variations in dynamic electron–ion collision frequencies ν ( ω ) in warm dense matter us...

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Veröffentlicht in:Physics of plasmas 2023-06, Vol.30 (6)
Hauptverfasser: Hentschel, Thomas W., Kononov, Alina, Olmstead, Alexandra, Cangi, Attila, Baczewski, Andrew D., Hansen, Stephanie B.
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Sprache:eng
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Zusammenfassung:Simulations and diagnostics of high-energy-density plasmas and warm dense matter rely on models of material response properties, both static and dynamic (frequency-dependent). Here, we systematically investigate variations in dynamic electron–ion collision frequencies ν ( ω ) in warm dense matter using data from a self-consistent-field average-atom model. We show that including the full quantum density of states, strong collisions, and inelastic collisions lead to significant changes in ν ( ω ). These changes result in red shifts and broadening of the plasmon peak in the dynamic structure factor, an effect observable in x-ray Thomson scattering spectra, and modify stopping powers around the Bragg peak. These changes improve the agreement of computationally efficient average-atom models with first-principles time-dependent density functional theory in warm dense aluminum, carbon, and deuterium.
ISSN:1070-664X
1089-7674
DOI:10.1063/5.0143738