Resonances in heavy + light–heavy atom reactions: influence on differential and integral cross-sections and on transition-state photodetachment spectra
- 1 January 1991
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Faraday Discussions of the Chemical Society
- Vol. 91, 17-30
- https://doi.org/10.1039/dc9919100017
Abstract
The effect of resonances on the observable properties of chemical reactions is studied theoretically, in particular for I + HI → IH + I and Cl + HCl → ClH + Cl. All of our calculations use hyperspherical coordinates and accurate coupled-channel solutions to the Schrödinger equation for reactive scattering in three dimensions. For I + HI, we investigate the effect of potential surface variation on transition-state IHI– photodetachment spectra for total angular momentum quantum number equal to zero. Four different I + HI London–Eyring–Polanyi–Sato (LEPS) surfaces are used, with classical barrier heights varying from 0.048 to 0.243 eV. The low-energy portion of the photodetachment spectra are examined in detail; it is found that peaks in the spectra arising from resonances and from direct scattering move up and broaden in energy as the barrier height is increased. An approximate match of the theoretical peak widths and spacings with the experimental ones is obtained for one of the surfaces. However, the peak intensities differ, suggesting that LEPS surfaces may not be adequate to characterize fully the observed spectra. For Cl + HCl, we perform a centrifugal-sudden hyperspherical calculation in order to examine the scattering properties of the single isolated resonance with transition-state quantum numbers (ν1, ν2, ν3)=(0, 0, 2)(where ν1= symmetric stretching, v2= bending, V3= asymmetric stretching quantum numbers). This relatively narrow (width 4 meV) resonance produces substantial peaks in certain state resolved reaction probabilities, which leads to a smooth step-like behaviour in the integral cross-sections, and Breit–Wigner (or Lorentzian) peaks in the differential cross-sections. Simple dynamical models are developed which explain these results.Keywords
This publication has 61 references indexed in Scilit:
- Molecular beam studies of the F+H2 reactionThe Journal of Chemical Physics, 1985
- Dynamical Resonances in Collinear, Coplanar, and Three-Dimensional Quantum Mechanical Reactive ScatteringPhysical Review Letters, 1975
- Wronskian analysis of resonance tunnelling reactionsMolecular Physics, 1973
- Semi-classical eigenvalue equations for quasistationary statesMolecular Physics, 1973
- Resonances in reactive collisions: Computational study of the H + H2 collisionChemical Physics Letters, 1971
- Quantum mechanical computational studies of chemical reactions: I. Close-coupling method for the collinear H + H2reactionMolecular Physics, 1971
- On the theory of the phase shifts for resonance tunnelling reactionsMolecular Physics, 1970
- Quantum Mechanics of the H+H2 Reaction: Exact Scattering Probabilities for Collinear CollisionsThe Journal of Chemical Physics, 1970
- On the analytical description of resonance tunnelling reactionsMolecular Physics, 1968
- Measurable consequences of a dip in the activation barrier for an adiabatic chemical reactionMolecular Physics, 1967