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- W1619049211 abstract "State-selective single-electron capture in slow (0.5char21{}3 keV/amu) collisions of ${mathrm{He}}^{2+}$ with laser-excited ${mathrm{Na}}^{mathrm{*}}$(3p) atoms has been studied experimentally by means of translational energy spectroscopy, and theoretically by 38-state atomic orbital (AO) close-coupling calculations. The initial orbital alignment of the ${mathrm{Na}}^{mathrm{*}}$(3p) state has been controlled via polarization of the exciting laser light. Electron capture into the dominant ${mathrm{He}}^{+}$(n=4) state is strongly favored for linear light polarization perpendicular to the ${mathrm{He}}^{2+}$ beam. The impact energy dependence of the observed alignment behavior can be quantitatively explained by the AO calculations." @default.
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- W1619049211 date "1992-06-01" @default.
- W1619049211 modified "2023-09-24" @default.
- W1619049211 title "Electron capture inHe2+collisions with alignedNa*(3p) atoms" @default.
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- W1619049211 doi "https://doi.org/10.1103/physrevlett.68.3277" @default.
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