Dielectronic satellite emission from a solid-density Mg plasma: Relationship to models of ionization potential depression

We report on experiments where solid-density Mg plasmas are created by heating with the focused output of the Linac Coherent Light Source x-ray free-electron laser. We study the K-shell emission from the helium- and lithium-like ions using Bragg crystal spectroscopy. Observation of the dielectronic...

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Veröffentlicht in:Physical review. E 2024-04, Vol.109 (4-2), p.045204-045204, Article 045204
Hauptverfasser: Pérez-Callejo, G, Gawne, T, Preston, T R, Hollebon, P, Humphries, O S, Chung, H-K, Dakovski, G L, Krzywinski, J, Minitti, M P, Burian, T, Chalupský, J, Hájková, V, Juha, L, Vozda, V, Zastrau, U, Vinko, S M, Rose, S J, Wark, J S
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Sprache:eng
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Zusammenfassung:We report on experiments where solid-density Mg plasmas are created by heating with the focused output of the Linac Coherent Light Source x-ray free-electron laser. We study the K-shell emission from the helium- and lithium-like ions using Bragg crystal spectroscopy. Observation of the dielectronic satellites in lithium-like ions confirms that the M-shell electrons appear bound for these high charge states. An analysis of the intensity of these satellites indicates that when modeled with an atomic-kinetics code, the ionization potential depression model employed needs to produce depressions for these ions which lie between those predicted by the well known Stewart-Pyatt and Ecker-Kroll models. These results are largely consistent with recent density functional theory calculations.
ISSN:2470-0045
2470-0053
DOI:10.1103/PhysRevE.109.045204