Phase space structure of triatomic molecules
- 1 July 1997
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 107 (1), 1-15
- https://doi.org/10.1063/1.474366
Abstract
The bifurcation structure is investigated for a Hamiltonian for the three coupled nonlinear vibrations of a highly excited triatomic molecule. The starting point is a quantum Hamiltonian used to fit experimental spectra. This Hamiltonian includes 1:1 Darling–Dennison resonance coupling between the stretches, and 2:1 Fermi resonance coupling between the stretches and bend. A classical Hamiltonian is obtained using the Heisenberg correspondence principle. Surfaces of section show a pronounced degree of chaos at high energies, with a mixture of chaotic and regular dynamics. The large-scale bifurcation structure is found semianalytically, without recourse to numerical solution of Hamilton’s equations, by taking advantage of the fact that the spectroscopic Hamiltonian has a conserved polyad quantum number, corresponding to an approximate constant of the motion of the molecule. Bifurcation diagrams are analyzed for a number of molecules including H2O, D2O, NO2, ClO2, O3, and H2S.Keywords
This publication has 53 references indexed in Scilit:
- Periodic orbit analysis of molecular vibrational spectra: Spectral patterns and dynamical bifurcations in Fermi resonant systemsThe Journal of Chemical Physics, 1996
- Analysis of highly excited vibrational eigenstatesInternational Reviews in Physical Chemistry, 1995
- Normal modes and local modes in H2 X: beyond the x, K relationsMolecular Physics, 1988
- Comment on: ‘‘Semiclassical phase space evolution of Fermi resonance spectra’’The Journal of Chemical Physics, 1988
- Semiclassical quantization using classical perturbation theory: Algebraic quantization of multidimensional systemsThe Journal of Chemical Physics, 1987
- Asymptotic Integrability and Periodic Solutions of a Hamiltonian System in $1:2:2$-ResonanceSIAM Journal on Mathematical Analysis, 1984
- First-order resonances in three-degrees-of-freedom systemsCelestial Mechanics and Dynamical Astronomy, 1983
- Classical S Matrix for Linear Reactive Collisions of H+Cl2The Journal of Chemical Physics, 1971
- Corrected bohr-sommerfeld quantum conditions for nonseparable systemsAnnals of Physics, 1958
- ber quantentheoretische Umdeutung kinematischer und mechanischer Beziehungen.The European Physical Journal A, 1925