A classical trajectory study of T-V energy transfer of a highly vibrationally excited Morse oscillator in collinear collision with an atom. II. Excitation and dissociation processes
Author:
Publisher
IOP Publishing
Subject
Atomic and Molecular Physics, and Optics
Link
http://stacks.iop.org/0022-3700/11/i=18/a=012/pdf
Reference54 articles.
1. Vibrational–Translational Energy Transfer in the Near‐Adiabatic Approximation
2. Dissociation of Hydrogen Molecules by Vibrational Excitation and Three-Body Recombination Coefficient
3. Dissociation of Hydrogen Molecules by Vibrational Excitation and Three-Body Recombination Coefficient. II
4. Vibrational Energy Exchange of Highly Excited Anharmonic Oscillators
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1. Theoretical investigation of collision induced dissociation in He + Na2;Chemical Physics;1998-03
2. Isotope variations of exchange and dissociation reactions in collinear He + H2+ collisions;Chemical Physics Letters;1996-01
3. Spectroscopic study of vibrational relaxation and cooling of rare‐gas excimers formed in a direct current discharge with supersonic expansion;The Journal of Chemical Physics;1995-11-08
4. A quantum mechanical study of dissociative He+H2 collisions;Chemical Physics;1995-08
5. Competition between dissociation and exchange processes: Contrasting dynamical behaviors in collinear H+H2 and He+H+2 collisions;The Journal of Chemical Physics;1990-06-15
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