Publication | Closed Access
Calculation of converged rovibrational energies and partition function for methane using vibrational–rotational configuration interaction
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Citations
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References
2004
Year
EngineeringPartition FunctionWatson HamiltonianMechanical EngineeringComputational ChemistryRovibration Partition FunctionEnergy MinimizationSpectra-structure CorrelationVibronic InteractionNumerical SimulationConverged Rovibrational EnergiesNonlinear VibrationPhysicsPhysical ChemistryQuantum ChemistryAb-initio MethodMicrowave SpectroscopyNatural SciencesApplied PhysicsHarmonic OscillatorVibrational–rotational Configuration Interaction
The rovibration partition function of CH4 was calculated in the temperature range of 100-1000 K using well-converged energy levels that were calculated by vibrational-rotational configuration interaction using the Watson Hamiltonian for total angular momenta J = 0-50 and the MULTIMODE computer program. The configuration state functions are products of ground-state occupied and virtual modals obtained using the vibrational self-consistent field method. The Gilbert and Jordan potential energy surface was used for the calculations. The resulting partition function was used to test the harmonic oscillator approximation and the separable-rotation approximation. The harmonic oscillator, rigid-rotator approximation is in error by a factor of 2.3 at 300 K, but we also propose a separable-rotation approximation that is accurate within 2% from 100 to 1000 K.
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