Vibration–rotation variational calculations: Precise results on HCN up to 25 000 cm−1
- 15 September 1993
- journal article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 99 (6) , 4379-4390
- https://doi.org/10.1063/1.466091
Abstract
Variation calculations of the vibration–rotation energy levels of many isotopomers of HCN are reported, for J=0, 1, and 2, extending up to approximately 8 quanta of each of the stretching vibrations and 14 quanta of the bending mode. The force field, which is represented as a polynomial expansion in Morse coordinates for the bond stretches and even powers of the angle bend, has been refined by least squares to fit simultaneously all observed data on the Σ and Π state vibrational energies, and the Σ state rotational constants, for both HCN and DCN. The observed vibrational energies are fitted to roughly ±0.5 cm−1, and the rotational constants to roughly ±0.0001 cm−1. The force field has been used to predict the vibration rotation spectra of many isotopomers of HCN up to 25 000 cm−1. The results are consistent with the axis-switching assignments of some weak overtone bands reported recently by Jonas, Yang, and Wodtke, and they also fit and provide the assignment for recent observations by Romanini and Lehmann of very weak absorption bands above 20 000 cm−1.Keywords
This publication has 33 references indexed in Scilit:
- Determining potential-energy surfaces from spectra: An iterative approachThe Journal of Chemical Physics, 1992
- The equilibrium structure of HCNThe Journal of Chemical Physics, 1992
- Accurate calculation and assignment of highly excited vibrational levels of floppy triatomic molecules in a basis of adiabatic vibrational eigenstatesThe Journal of Chemical Physics, 1991
- Vibrational structure of hydrogen cyanide up to 18 900 cm^−1Journal of the Optical Society of America B, 1990
- Variational calculations of rovibrational states: a precise high-energy potential surface for HCNPhilosophical Transactions A, 1990
- Hamiltonians for the internal dynamics of triatomic moleculesJournal of the Chemical Society, Faraday Transactions 2: Molecular and Chemical Physics, 1988
- Anharmonic potential-energy surfaces, vibrational frequencies and infrared intensities calculated from highly correlated wavefunctionsJournal of the Chemical Society, Faraday Transactions 2: Molecular and Chemical Physics, 1988
- An efficient procedure for the calculation of the vibrational energy levels of any triatomic moleculeMolecular Physics, 1986
- Classical chaos and quantum simplicity: Highly excited vibrational states of HCNThe Journal of Chemical Physics, 1982
- Highly excited HCN: The inapplicability of classical dynamicsThe Journal of Chemical Physics, 1982