On the stationary phase evaluation of path integrals in the coherent states representation
- 21 August 1983
- journal article
- Published by IOP Publishing in Journal of Physics A: General Physics
- Vol. 16 (12) , 2693-2701
- https://doi.org/10.1088/0305-4470/16/12/016
Abstract
The extremal paths that arise in the stationary phase evaluation of coherent state path integrals do not seem to have a simple physical interpretation, in contrast to the extremal paths that occur in the conventional path integrals. On the other hand, a recently derived semiclassical formula for the coherent state propagator involves a path that is determined in exactly the same manner as the extremal paths of the conventional path integrals. Since both the semiclassical and the stationary phase analyses yield asymptotic (h(cross) to 0) approximations, the stationary phase and the semiclassical expressions for the propagator should be identical. The author presents a simple and direct proof that, in spite of the apparent differences, this is indeed the case. The simplification in the semiclassical formula is due to the utilisation of an appropriate set of canonical variables to describe the classical dynamics. In order to illustrate the usefulness of the semiclassical formula they present an application to the problem of the degenerate parametric amplifier, which had been treated before by operator ordering and path integral methods. The semiclassical approach has a simple classical interpretation that is absent in the alternative treatments.Keywords
This publication has 19 references indexed in Scilit:
- Path-integral approach to problems in quantum opticsPhysical Review A, 1982
- Path integrals for the nuclear many-body problemPhysical Review C, 1981
- Semiclassical Gaussian basis set method for molecular vibrational wave functionsThe Journal of Chemical Physics, 1979
- Discrete coherent states on the von Neumann latticePhysical Review B, 1978
- Phase space interpretation of semiclassical theoryThe Journal of Chemical Physics, 1977
- Generalized theory of semiclassical amplitudesThe Journal of Chemical Physics, 1977
- Classical S-matrix limit of wave packet dynamicsThe Journal of Chemical Physics, 1976
- Proof of completeness of lattice states in therepresentationPhysical Review B, 1975
- An approach to the study of quantum systemsJournal of Mathematical Physics, 1974
- Coherent and Incoherent States of the Radiation FieldPhysical Review B, 1963