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Título
Coordinate transformation methods to calculate state-to-state reaction probabilities with wave packet treatments
Autor(es)
Palabras clave
Product decoupling method
Quantum dynamics
Chemical reactions
Transition state
Statistical model
Energy barriers
Diatom Systems
Fecha de publicación
2006
Editor
AIP Publishing
Citación
Gómez-Carrasco, S., & Roncero, O. (2006). Coordinate transformation methods to calculate state-to-state reaction probabilities with wave packet treatments. The Journal of Chemical Physics, 125(5). https://doi.org/10.1063/1.2218337
Resumen
[EN]A procedure for the transformation from reactant to product Jacobi coordinates is proposed, which is designed for the extraction of state-to-state reaction probabilities using a time-dependent method in a body-fixed frame. The method consists of several steps which involve a negligible extra computational time as compared with the propagation. Several intermediate coordinates are used, in which the efficiency depends on the masses of the atoms involved in the reaction. A detailed study of the relative efficiency of using reactant and product Jacobi coordinates is presented for several systems, and simple arguments are found depending on the masses of the atoms involved in the reaction. It is found that the proposed method is, in general, more efficient than the use of product Jacobi coordinates, specially for nonzero total angular momentum. State-to-state reaction probabilities are obtained for Li+FH -> LiF+H and F+HO -> FH+O collisions for several total angular momenta. (c) 2006 American Institute of Physics.
URI
ISSN
0021-9606
DOI
10.1063/1.2218337
Versión del editor
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- GIDM. Artículos [73]













