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- W2002177615 abstract "Electron capture in collisions of ${mathrm{O}}^{5+}$ ions with H atoms is investigated theoretically by using a semiclassical molecular-orbital method in the energy range from 6 eV/amu to 10 keV/amu. Electron translation effects are properly included (to the first order of relative velocity). The primary contributors to electron capture are ${mathrm{O}}^{4+}$(2s4l) states. However, two-electron transfer-excitation processes are also important in the entire energy range studied. The contribution from these processes amounts to 50% of the total at 1 keV/amu; it remains at 27% even at studied energy as low as 6 eV/amu. The ${mathrm{O}}^{4+}$(2p3p $^{3}$S) and ${mathrm{O}}^{4+}$(2p3d $^{3}$P) states for the triplet and the ${mathrm{O}}^{4+}$(2p3p $^{1}$S) state for the singlet contribute dominantly to the transfer-excitation process at low collision energies. Results of an analysis based on polarization parameters for electron capture are reported." @default.
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- W2002177615 date "1993-11-01" @default.
- W2002177615 modified "2023-10-18" @default.
- W2002177615 title "Molecular treatment of electron capture in collisions ofO5+ions with H atoms at energies from 6 eV/amu to 10 keV/amu: Transfer-excitation processes" @default.
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- W2002177615 doi "https://doi.org/10.1103/physreva.48.3652" @default.
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