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- W2022776836 abstract "Strong electron emission from the decay of the ${mathrm{Na}}^{*}(2{p}^{5}3{s}^{2})$ state has been found in low-energy (0.3-2-keV) ${mathrm{Li}}^{+}$ collisions with Na-covered metal surfaces. The results show that at the initial oxygen adsorption, the formation of the core-excited ${mathrm{Na}}^{*}$ state is rapidly reduced as the work function decreases, which is attributed to the decreased probability of promoting core electrons into empty surface states between the Fermi level and the vacuum level. The ${mathrm{Li}}^{ensuremath{-}}$ spectra versus oxygen exposure demonstrate that the initial oxygen adsorption increases the electron-capture probability of the ions in the exit trajectory." @default.
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- W2022776836 date "1996-09-15" @default.
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- W2022776836 title "Electronic-structure effect on core-level excitation and charge transfer in ions scattering from alkali-metal-covered surfaces" @default.
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- W2022776836 doi "https://doi.org/10.1103/physrevb.54.r8389" @default.
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