Abstract
The experimentally observed double structure of the triply differential cross section in the recoil region of the ionization of the copper K-shell by relativistic electrons is analysed by calculations based on the relativistic distorted-wave Born approximation. We study separately the influence of the atomic potential on the incoming and outgoing electrons. Evidence is presented in support of the interpretation that different mechanisms account for the two maxima in the recoil regime.
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More From: Journal of Physics B: Atomic, Molecular and Optical Physics
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