BORN-OPPENHEIMER BREAKDOWN IN THE GROUND-STATE OF CARBON-MONOXIDE - A DIRECT REDUCTION OF SPECTROSCOPIC LINE POSITIONS TO ANALYTICAL RADIAL HAMILTONIAN OPERATORS

被引:51
作者
COXON, JA
HAJIGEORGIOU, PG
机构
关键词
D O I
10.1139/p92-004
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
A collection of 10 866 of the most precise ground-state (X1-SIGMA+) vibration-rotational and pure rotational line positions of four carbon monoxide isotopomers ((CO)-C-12-O-16, (CO)-C-12-O-18, (CO)-C-13-O-16, and (CO)-C-13-O-18) is employed simultaneously in a direct determination of the radial Hamiltonian operator in compact analytical form. The 22-parameter isotopically self-consistent operator takes full account of the Born-Oppenheimer breakdown and its quantum-mechanical eigenvalues represent all the available spectroscopic line positions of CO isotopomers to within the experimental uncertainties. Rayleigh-Schrodinger perturbation theory is employed to calculate quantum-mechanical molecular constants of rotation (B(v) - M(v)) for nine common isotopomefic forms of CO. Together with the quantum-mechanical vibrational eigenvalues these are fully consistent with the exact eigenvalues obtained by direct solution of the radial wave equation. The set of constants is expected to provide an accurate prediction of line positions of CO isotopomers that have not yet been experimentally observed.
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页码:40 / 54
页数:15
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