Theoretical treatment of inelastic thermal collisions
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Atomic and Molecular Physics, and Optics
Link
http://stacks.iop.org/0953-4075/29/i=23/a=024/pdf
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1. Determination of the rate constants for population of the individual Cd+* levels in thermal Penning and charge transfer reactions of He*(23S1) and He+with cadmium
2. Excitation of Zn+* levels in Penning and charge transfer reactions of He*(23S1) and He+with zinc
3. All-electron Dirac-Fock-Slater SCF calculations for electronic and geometric structures of the Hg2and Hg3molecules
4. Theoretical investigations of charge exchange with ion excitation in atomic collisions at thermal energies
5. Charge exchange with ion excitation in collisions of helium ions with mercury atoms
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1. Landau–Zener type surface hopping algorithms;The Journal of Chemical Physics;2014-06-14
2. Model approach for low-energy inelastic atomic collisions and application to Al+H and Al++H−;Physical Review A;2013-11-12
3. Nonadiabatic nuclear dynamics of atomic collisions based on branching classical trajectories;Physical Review A;2011-07-22
4. Nonadiabatic effects in inelastic collisional processes;Physica Scripta;2009-10
5. Inelastic electronic excitation and electron transfer processes in collisions between Mg(3S01) atoms and K+(S01) ions studied by crossed beams in the 0.10-3.80-keV energy range;The Journal of Chemical Physics;2005-09-22
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