Scattering of thermal He beams by crossed atomic and molecular beams. V. Anisotropic intermolecular potentials for He+CO2, N2O, C2N2
- 1 February 1983
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 78 (3) , 1145-1162
- https://doi.org/10.1063/1.444907
Abstract
Experimentally measured differential cross sections are presented for the interactions of He with the linear molecules CO2,N2O, and C2N2. These data show pronounced dampening of the diffraction oscillations, and provide an indication that the intermolecular potentials have large anisotropies. Indeed, central-field analyses of the experimental data, even in terms of very flexible models, are shown to be inadequate. However, an anisotropic analysis using the infinite-order sudden approximation yields physically reasonable intermolecular potentials, and provides excellent fits to the scattering data. Neither the spherical averages of these empirical anisotropic potentials, nor the spherically symmetric potentials obtained by the central-field analyses, reproduce the experimental differential cross sections. For He+CO2, the anisotropic potential is extended to highly repulsive interactions, to which the present data are insensitive, by combining theoretical calculations and measurements of gas-phase bulk properties. Estimates for the reliability of the fitted anisotropic potentials are given, and convenient parametrizations are recommended.Keywords
This publication has 81 references indexed in Scilit:
- Determining anisotropic intermolecular potentials for van der Waals moleculesFaraday Discussions of the Chemical Society, 1977
- Intermolecular potential surfaces from electron gas methods. I. Angle and distance dependence of the He–CO2 and Ar–CO2 interactionsThe Journal of Chemical Physics, 1976
- Quantum mechanical close coupling approach to molecular collisions. jz -conserving coupled states approximationThe Journal of Chemical Physics, 1974
- Space-fixed vs body-fixed axes in atom-diatomic molecule scattering. Sudden approximationsThe Journal of Chemical Physics, 1974
- Classical Study of Rotational Excitation of a Rigid Rotor: Li+ + H2The Journal of Chemical Physics, 1971
- Angular Distribution of the Scattering of Ar by N2 and NeThe Journal of Chemical Physics, 1971
- GASEOUS INTERDIFFUSION COEFFICIENTSJOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 1970
- Role of the Anisotropy of the Potential in Quenching of Glory Extrema in Atom–Diatomic Molecule ScatteringThe Journal of Chemical Physics, 1968
- Velocity Distributions in Molecular Beams from Nozzle SourcesPhysics of Fluids, 1965
- Formal Kinetic Theory of Transport Phenomena in Polyatomic Gas MixturesThe Journal of Chemical Physics, 1963