Published November 14, 1987 | Version v1
Journal article

Low-energy atomic scattering of ground-state C+(2P) ions by atomic hydrogen: role of non-adiabatic couplings and resonances in elastic and inelastic processes

  • 1. Chicago Univ., IL (USA). Dept. of Chemistry
  • 2. Chicago Univ., IL (USA). James Franck Inst.

Description

The low-energy elastic and inelastic scattering of C+(2P) by H(2S) is used as a model system to probe the dynamical ramifications of non-adiabatic couplings and resonances in open-shell-atom-open-shell-atom scattering. The underlying dynamics and role of resonances are illustrated by presenting contributions from individual partial waves to the total cross section. This enables us to compare the resonance structure of the scattering cross sections with that for the photo-dissociation of CH+. The presence of phase differences between the multiple molecular states, correlating to a single elastic channel, is shown to produce the analogue of Stueckelberg-type oscillations in the partial elastic scattering cross sections. As expected, averaging over partial waves tends to wash out much of the interesting non-adiabatic resonance structure predicted for the CH+ photo-dissociation cross section. (author)

Additional details

Publishing Information

Journal Title
J. Phys., B
Journal Volume
20
Journal Issue
21
Series
J. Phys., B.
Journal Page Range
5737-5752
ISSN
0022-3700
CODEN
JPAMA

Optional Information

Contract/Grant/Project number
Grant NSF CHE86-17480