Toward constraint of ionization-potential depression models in a convergent geometry

We demonstrate the value of inner-shell X-ray absorption spectroscopy for dense-plasma atomic physics and explore the coupling between constraint of the thermodynamic state and constraint of ionization-potential depression models. Synthetic K-shell absorption spectra are generated along a radius fro...

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Veröffentlicht in:High energy density physics 2024-03, Vol.50, p.101076, Article 101076
Hauptverfasser: Bishel, D.T., Nilson, P.M., Chin, D.A., Ruby, J.J., Smith, E., Hu, S.X., Epstein, R., Golovkin, I.E., Rygg, J.R., Collins, G.W.
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Sprache:eng
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Zusammenfassung:We demonstrate the value of inner-shell X-ray absorption spectroscopy for dense-plasma atomic physics and explore the coupling between constraint of the thermodynamic state and constraint of ionization-potential depression models. Synthetic K-shell absorption spectra are generated along a radius from a point-like core and analyzed using different ionization-potential depression models. Within this synthetic analysis framework, we identify plasma conditions (Te=400 eV, ρ=40 g/cm3) accessible by spherical implosions where K-shell absorption spectra discriminate between models if the material temperature is measured to a precision of 20%. The analysis is extensible to a finite-sized core and can be used to guide future studies of ionization-potential depression, informing material and radiative properties of matter in fusion plasmas and stellar interiors.
ISSN:1574-1818
1878-0563
DOI:10.1016/j.hedp.2024.101076