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Titlebook: Coherence and Correlation in Atomic Collisions; H. Kleinpoppen,J. F. Williams Book 1980 Plenum Press, New York 1980 Cross section.atom.ato

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Energy Dependence of the Alignment in Inner-Shell Ionization by Electron Impact,y Berezhko and Kabachnik and Omidvar using Hartree-Slater wave functions, but disagree with those values calculated with hydrogenic wave functions. The general energy dependence of the A. coefficient for electron impact ionization of all subshells studied so far (L. of Ar and Mg and M., M. of Kr) will be discussed.
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Identification of States Excited by Collision: Current State of Theory,but become progressively incoherent as the partition of total energy between target and scattered particle becomes increasingly precise. Recent progress in the geometrical characterization of target states is outlined with reference to still unpublished work of G. Gabrielse and T. Baer.
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Vyacheslav Yu. Shaprynskiı,Boris M. Vernikovhe reaction mechanism has been investigated in order to find a working theory successful in interpreting experimental data. The basic theory whose validity has been investigated is the eikonal-averaged, distorted-wave impulse approximation. In this framework the (e, 2e) amplitude factorizes into par
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Introduction and Basic Results,onization of atomic hydrogen. The electron-photon angular correlations (at 40, 54.4, and 100 eV and θ. = 10°, 15°, and 20°) are compared with calculations based on various approximations (such as hybrid close coupling, ., or .). None of the theories appears to be completely satisfactory over the ent
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Introduction and Basic Results,ld. The Wannier theory has been rederived both classically and quantum mechanically. Particular attention has been paid to the spin of the escaping electrons. In the case of two electrons the ionization probability near threshold into the triplet channel is shown to be much smaller than into the sin
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