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- W2091847533 abstract "High-resolution single-electron capture spectra have been obtained for ${mathrm{O}}^{2+}$ ions colliding with He, Ne, and Ar at 4-keV energy. For the He and Ne targets the dominant capture channels involve transitions from the ground $^{3}$P state of ${mathrm{O}}^{2+}$ to the first and second excited states ${(}^{2}$${mathit{D}}^{mathit{o}}$ and $^{2}$${mathit{P}}^{mathit{o}}$) of ${mathrm{O}}^{+}$. Eight well-resolved peaks are observed in each spectrum, corresponding to exactly the same capture channels with the target product ions (${mathrm{He}}^{+}$ and ${mathrm{Ne}}^{+}$) undisturbed in their ground states. One relatively intense peak observed in the Ne spectrum is attributed to capture from the quintet state of ${mathrm{O}}^{2+}$ (2s2${mathit{p}}^{3}$ $^{5}$${mathit{S}}^{mathit{o}}$) to the $^{4}$P state of ${mathrm{O}}^{+}$(2s2${mathit{p}}^{4}$ $^{4}$P). The ${mathrm{O}}^{2+}$ in the Ar spectrum exhibits an entirely different character. Eight peaks are discernible, of which five are associated with capture channels which leave the target product ${mathrm{Ar}}^{+}$ ion in an excited state. The dominant channel is due to the ground-to-ground transition ${mathrm{O}}^{2+}$${(}^{3}$P)ensuremath{rightarrow}${mathrm{O}}^{+}$${(}^{4}$${mathit{S}}^{mathit{o}}$) with the target ${mathrm{Ar}}^{+}$ ion formed in its first excited state (3s3${mathit{p}}^{6}$ $^{2}$S)." @default.
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- W2091847533 date "1994-08-01" @default.
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- W2091847533 title "Translational energy spectra for single-electron capture byO2+in He, Ne, and Ar" @default.
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- W2091847533 doi "https://doi.org/10.1103/physreva.50.1149" @default.
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