electron-ion collisions
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7 matching pages
1: Charles W. Clark
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► Nayfeh), published by Gordon and Breach in 1985, Atomic Spectra and Collisions in External Fields (with M.
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2: Bibliography U
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Collisions and umbilic catastrophes. The hyperbolic umbilic canonical diffraction integral.
Molecular Phys. 50 (6), pp. 1215–1230.
3: 33.22 Particle Scattering and Atomic and Molecular Spectra
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►Positive-energy functions correspond to processes such as Rutherford scattering and Coulomb excitation of nuclei (Alder et al. (1956)), and atomic photo-ionization and electron-ion collisions (Bethe and Salpeter (1977)).
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Attractive potentials: | , . |
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4: 5.20 Physical Applications
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►In nonrelativistic quantum mechanics, collisions between two charged particles are described with the aid of the Coulomb phase shift ; see (33.2.10) and Clark (1979).
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5: Bibliography C
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Molecular collisions and cusp catastrophes: Three methods for the calculation of Pearcey’s integral and its derivatives.
Chem. Phys. Lett. 81 (2), pp. 306–310.
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Evaluation of multidimensional canonical integrals in semiclassical collision theory.
Molecular Phys. 26 (6), pp. 1371–1377.
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Semiclassical theory of molecular collisions: Many nearly coincident classical trajectories.
Molecular Phys. 27 (4), pp. 853–866.
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Catastrophes and molecular collisions.
Molecular Phys. 31 (1), pp. 33–55.
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6: Bibliography M
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Theory of Atomic Collisions.
3rd edition, Oxford Univ. Press., Oxford.
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7: Bibliography B
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The Calculation of Spherical Bessel Functions and Coulomb Functions.
In Computational Atomic Physics: Electron and Positron Collisions
with Atoms and Ions, K. Bartschat and J. Hinze (Eds.),
pp. 181–202.
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