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Photoionization of tungsten ions: experiment and theory for W$^{4+}$

Published 2 Mar 2017 in physics.atom-ph | (1703.00892v1)

Abstract: Experimental and theoretical results are reported for single-photon single ionization of the tungsten ion W${4+}$. Absolute cross sections have been measured employing the photon-ion merged-beams setup at the Advanced Light Source in Berkeley. Detailed photon-energy scans were performed at 200~meV bandwidth in the 40 -- 105~eV range. Theoretical results have been obtained from a Dirac-Coulomb R-matrix approach employing basis sets of 730 levels for the photoionization of W${4+}$. Calculations were carried out for the $4f{14}5s2 5p6 5d2 \; {3}{\rm F}{J}$, $J$=2, ground level and the associated fine-structure levels with $J$=3 and 4 for the W${4+}$ ions. In addition, cross sections have been calculated for the metastable levels $4f{14}5s2 5p6 5d2 \; {3}{\rm P}{0,1,2},{1}{\rm D}{2},{1}{\rm G}{4},{1}{\rm S}_{0}$. Very satisfying agreement of theory and experiment is found for the photoionization cross section of W${4+}$ which is remarkable given the complexity of the electronic structure of tungsten ions in low charge states.

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