Photoionization of metastable heliumlike C4+ (1s2s3S1) ions: Precision study of intermediate doubly excited states

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Erscheinungsjahr:
2018
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Text
Schlagwort:
  • own
Beschreibung:
  • In a joint experimental and theoretical endeavor, photoionization of metastable C4+(1s2sS13) ions via intermediate levels with hollow, double-K-vacancy configurations 2s2p, 2s3p, 2p3s, 2p3d, 2s4p, 2p4s, and 2p4d has been investigated. High-resolution photon-ion merged-beams measurements were carried out with the resolving power reaching up to 25 800 which is sufficient to separate the leading fine-structure components of the 2s2pP3 term. Many-body perturbation theory was employed to determine level-to-level cross sections for K-shell excitation with subsequent autoionization. The resonance energies were calculated with inclusion of electron correlation and radiative contributions. Their uncertainties are estimated to be below ±1 meV. Detailed balance confirms the present photoionization cross-section results by comparison with previous dielectronic-recombination measurements. The high accuracy of the theoretical transition energies together with the present experimental results qualify photoabsorption resonances in heliumlike ions as new, greatly improved energy-reference standards at synchrotron radiation facilities.
  • In a joint experimental and theoretical endeavor, photoionization of metastable C4+⁡(1⁢⁢2⁢31) ions via intermediate levels with hollow, double--vacancy configurations 2⁢⁢2⁢, 2⁢⁢3⁢, 2⁢⁢3⁢, 2⁢⁢3⁢, 2⁢⁢4⁢, 2⁢⁢4⁢, and 2⁢⁢4⁢ has been investigated. High-resolution photon-ion merged-beams measurements were carried out with the resolving power reaching up to 25 800 which is sufficient to separate the leading fine-structure components of the 2⁢⁢2⁢3 term. Many-body perturbation theory was employed to determine level-to-level cross sections for -shell excitation with subsequent autoionization. The resonance energies were calculated with inclusion of electron correlation and radiative contributions. Their uncertainties are estimated to be below ±1 meV. Detailed balance confirms the present photoionization cross-section results by comparison with previous dielectronic-recombination measurements. The high accuracy of the theoretical transition energies together with the present experimental results qualify photoabsorption resonances in heliumlike ions as new, greatly improved energy-reference standards at synchrotron radiation facilities.
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  • info:eu-repo/semantics/restrictedAccess
Quellsystem:
Forschungsinformationssystem der UHH

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oai:www.edit.fis.uni-hamburg.de:publications/afaaba72-e3f5-455c-847b-7fc2b3489c38