Photoionization of tungsten ions: experiment and theory for W$^{4+}$
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.
Paper Prompts
Sign up for free to create and run prompts on this paper using GPT-5.
Top Community Prompts
Collections
Sign up for free to add this paper to one or more collections.