Rotationally and vibrationally inelastic scattering in the rotational IOS approximation. Ultrasimple calculation of total (differential, integral, and transport) cross sections for nonspherical molecules
- 15 February 1978
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 68 (4) , 1585-1601
- https://doi.org/10.1063/1.435927
Abstract
A simple, direct derivation of the rotational infinite order sudden (IOS) approximation in molecular scattering theory is given. Connections between simple scattering amplitude formulas, choice of average partial wave parameter, and magnetic transitions are reviewed. Simple procedures for calculating cross sections for specific transitions are discussed and many older model formulas are given clear derivations. Total (summed over rotation) differential, integral, and transport cross sections, useful in the analysis of many experiments involving nonspherical molecules, are shown to be exceedingly simple: They are just averages over the potential angle of cross sections calculated using simple structureless spherical particle formulas and programs. In the case of vibrationally inelastic scattering, the IOSA, without further approximation, provides a well‐defined way to get fully three dimensional cross sections from calculations no more difficult than collinear calculations. Integral, differential, viscosity, and diffusion cross sections for He–CO2 obtained from the IOSA and a realistic intermolecular potential are calculated as an example and compared with experiment. Agreement is good for the complete potential but poor when only its spherical part is used, so that one should never attempt to treat this system with a spherical model. The simplicity and accuracy of the IOSA make it a viable method for routine analysis of experiments involving collisions of nonspherical molecules.Keywords
This publication has 70 references indexed in Scilit:
- On the factorization and fitting of molecular scattering informationThe Journal of Chemical Physics, 1977
- Infinite order sudden approximation for rotational energy transfer in gaseous mixturesThe Journal of Chemical Physics, 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
- The rotational excitation of carbon monoxide by hydrogen atom impactProceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1975
- 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
- GASEOUS INTERDIFFUSION COEFFICIENTSJOURNAL OF CHEMICAL ENGINEERING OF JAPAN, 1970
- Semiclassical Approximation for the Total Cross Section of Atom–Diatomic-Molecule Collisions; Quenching of Glory UndulationsThe Journal of Chemical Physics, 1969
- Formal Kinetic Theory of Transport Phenomena in Polyatomic Gas MixturesThe Journal of Chemical Physics, 1963
- Effektive Stoßquerschnitte bei StreuversuchenThe European Physical Journal A, 1962