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- W2146058482 endingPage "13477" @default.
- W2146058482 startingPage "13466" @default.
- W2146058482 abstract "Excitation of a localized oscillator or phonon due to transient charge transfer into and out of electronic states linearly coupled to the oscillator is considered within several different contexts. Specifically, the basic physical content of the mechanisms responsible for phonon broadening in core-level spectroscopy, intramolecular vibrational excitation in resonant electron scattering, phonon excitation in resonant electron tunneling through quantum-well heterostructures, and hot-electron-induced resonant desorption is shown to be similar. Existing exact solutions to the scattering and tunneling problems are here adapted to resonant desorption and numerical consequences--such as excitation and desorption probabilities and translational energy distributions--are obtained. These results and insights are considered in the light of a semiclassical wave-packet-dynamics model, which previously had been developed to account for observed nonthermal, laser-induced desorption in the system NO/Pt(111)." @default.
- W2146058482 created "2016-06-24" @default.
- W2146058482 creator A5034976604 @default.
- W2146058482 date "1991-12-15" @default.
- W2146058482 modified "2023-09-23" @default.
- W2146058482 title "Inelastic resonance scattering, tunneling, and desorption" @default.
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- W2146058482 doi "https://doi.org/10.1103/physrevb.44.13466" @default.
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