Resonant two-electron processes in ion-atom collisions

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J.R. Macdonald Laboratory, Dept. of Phys., Kansas State Univ., Manhattan, KS 66506, United States [1 ]
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Atoms - Auger electron spectroscopy - Electron emission - Electron energy levels - Electron scattering - Ions - Mathematical models;
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A review of some of the recent results in an effort to obtain electron-ion differential scattering cross sections using fast ion-atom collisions is given. In the projectile frame, if we neglect the effects from the target nucleus, the ion-atom collision can be described as an electron-ion scattering process where the energy distribution of the impinging quasi-free electrons is determined by the Compton-profile of the target. In this electron scattering model (ESM), in addition to the direct electron scattering, doubly excited state formation of the projectile ion is also possible. This is a resonant process in which the doubly excited states can subsequently decay by ejecting Auger-electrons. We have studied elastic, inelastic and superelastic electron scattering as a function of incoming electron energy by observing the outgoing electron energy in the ion-atom collision emission spectra.
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