Comparison of the propagation of semiclassical frozen Gaussian wave functions with quantum propagation for a highly excited anharmonic oscillator
- 1 January 1986
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 84 (1) , 326-334
- https://doi.org/10.1063/1.450142
Abstract
The propagation of an initially highly excited localized wave packet in an anharmonic oscillator potential is studied within the frozen Gaussian approximation. Comparison is made to quantum mechanical basis set calculations. The frozen Gaussian approximation involves the expansion of the initial wave function in terms of an overcomplete Gaussian basis set. The wave function evolution is evaluated by allowing each Gaussian to travel along a classical trajectory with its shape held rigid. A Monte Carlo algorithm is employed in the selection of the initial Gaussian basis functions. The frozen Gaussian results are very good for times on the order of a few vibrational periods of the oscillator and remain qualitatively correct for the entire length of the calculations which is 12 vibrational periods. The dependence of the calculations on the width of the Gaussian basis functions is investigated and the effect of a simplifying approximation for the prefactor of the Gaussians is tested.Keywords
This publication has 24 references indexed in Scilit:
- Quantum manifestations of classical resonance zonesThe Journal of Chemical Physics, 1984
- Generator coordinate method based on coherent states. II. Calculation of vibrational states by the double circular orbit methodJournal of Physics B: Atomic and Molecular Physics, 1983
- Semiclassical quantization and extraction of eigenfunctions using arbitrary trajectoriesThe Journal of Chemical Physics, 1983
- Preparation and dynamics of vibrational hot spots in polyatomics via raman sctteringChemical Physics Letters, 1982
- Exact time-dependent wave packet propagation: Application to the photodissociation of methyl iodideThe Journal of Chemical Physics, 1982
- Quasidecay of harmonic oscillator coherent states in nonharmonic potentialsThe Journal of Chemical Physics, 1981
- Generator coordinate method based on coherent states: calculation of nuclear bound and resonance states in moleculesJournal of Physics B: Atomic and Molecular Physics, 1981
- Frozen Gaussians: A very simple semiclassical approximationThe Journal of Chemical Physics, 1981
- Coherent and Incoherent States of the Radiation FieldPhysical Review B, 1963
- Continuous-Representation Theory. I. Postulates of Continuous-Representation TheoryJournal of Mathematical Physics, 1963