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- W2021322140 abstract "Theoretical results for the transition energies involving three Rydberg series, optical oscillator strengths (OOSs), and generalized oscillator strengths (GOSs) for valence and inner-shell electronic excitations are presented for the transitions ${}^{1}Pensuremath{leftarrow}X{}^{1}{S}_{0}(3sensuremath{rightarrow}np,2sensuremath{rightarrow}np,1sensuremath{rightarrow}mathrm{np}e{2p}_{z}ensuremath{rightarrow}ns),$ ${}^{1}Sensuremath{leftarrow}X{}^{1}{S}_{0}$($3s$ensuremath{rightarrow}$mathrm{ns}$, 2$s$ ensuremath{rightarrow}$mathrm{ns}$, 1$s$ensuremath{rightarrow}$ns),$ and ${}^{1}Densuremath{leftarrow}X{}^{1}{S}_{0}(3sensuremath{rightarrow}3d)$ in the magnesium atom. The influence of relaxation and correlation effects on the excitation energy and OOS and GOS values is studied. For this purpose, the target wave functions for each electronic state studied is determined independently at the Hartree-Fock and configuration-interaction methods. The first Born approximation is used in the calculation of the GOS and the properties between the nonorthogonal target wave functions are calculated with a biorthogonalization procedure." @default.
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- W2021322140 date "1997-10-01" @default.
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- W2021322140 title "Optical and generalized oscillator strengths for valence and inner-shell excitations on the Mg atom" @default.
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- W2021322140 doi "https://doi.org/10.1103/physreva.56.2720" @default.
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