The classical path approximation in time-dependent quantum collision theory
- 1 November 1978
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 69 (9) , 4195-4200
- https://doi.org/10.1063/1.437100
Abstract
Time-dependent treatments of molecular collisions have frequently employed the combination of quantum equations for the internal degrees of freedom (i.e., vibration, rotation) with a classical description of the translational motion. In this paper, it is shown how energy-conserving classical path equations may be derived from first principles, thereby obtaining quantum correction terms of arbitrary order. These expressions have interesting implications for the question of how the classical limit is approached. If the translational degree of freedom is assumed to be described by a very narrow wave packet, the correction term to first order in h/ is purely imaginary and therefore non-Hermitian. These techniques can be generalized to a classical treatment of other degrees of freedom, and the case of rotation in an atom–vibrotor collision is explicitly considered. For both the translational and rotational examples, the full series of corrections takes on an interesting and suggestive exponential form. The failure of classical path methods to satisfy microscopic reversibility is ascribed to a difficulty with the boundary conditions for the translational motion.Keywords
This publication has 10 references indexed in Scilit:
- Application of stochastic theory to vibration–rotation inelasticity in the He–H2 systemThe Journal of Chemical Physics, 1977
- On the best average trajectory in the vicinity of energetic thresholdThe Journal of Chemical Physics, 1976
- New semiclassical treatments of rotational and vibrational transitions in heavy-particle collisions. I. H–H2 and He–H2 collisionsThe Journal of Chemical Physics, 1975
- Time-dependent approach to semiclassical dynamicsThe Journal of Chemical Physics, 1975
- Molecular Trajectory CalculationsAnnual Review of Physical Chemistry, 1974
- Classical‐Limit Quantum Mechanics and the Theory of Molecular CollisionsPublished by Wiley ,1974
- Semiclassical Collision Theory within the Feynman Path-Integral FormalismPhysical Review A, 1973
- Time-Dependent Semiclassical Scattering Theory. I. Potential ScatteringPhysical Review B, 1969
- Theory of vibrational energy transfer between simple molecules in nonreactive collisionsChemical Reviews, 1969
- Molecular Motion and the Moment Analysis of Molecular Spectra. II. The Rotational Raman EffectThe Journal of Chemical Physics, 1964