The present paper represents the first part of an extensive theoretical study on the electronic spectrum of B 2 H 2 . The results of ab initio calculations of the vertical spectrum and the trans-and cis-bending potential curves for the lowlying triplet and singlet electronic states are reported. Spe
Ab Initio Study of the Electronic Spectrum of the SiO+ Cation
✍ Scribed by Z.-L. Cai; J.P. François
- Publisher
- Elsevier Science
- Year
- 1999
- Tongue
- English
- Weight
- 152 KB
- Volume
- 197
- Category
- Article
- ISSN
- 0022-2852
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✦ Synopsis
The potential energy curves of the SiO ϩ cation for the low-lying electronic states, correlating to the first two lowest dissociation channels (Si ϩ ( 2 P u ) ϩ O( 3 P g ) and Si ϩ ( 2 P u ) ϩ O( 1 D g )), have been calculated at the internally contracted multireference configuration interaction (CMRCI) level with Dunning's correlation-consistent polarized valence quadruple zeta (cc-pVQZ) basis set. The equilibrium bond lengths (r e ), harmonic frequencies ( e ), first-and second-order anharmonicity constants ( e x e , e y e ), rotational constants (B e ), vibrational separations (⌬G 1/ 2 ), dipole moments ( e ), excitation (T e ), and dissociation energies (D e ) for eight bound doublet states (X 2 ⌺ ϩ , A 2 ⌸, B 2 ⌺ ϩ , (2) 2 ⌬, (3) 2 ⌺ ϩ , (4) 2 ⌸, (3) 2 ⌺ Ϫ , and (1) 2 ⌽) and four bound quartet states (a 4 ⌺ ϩ , (1) 4 ⌸, (1) 4 ⌬, and (1) 4 ⌺ Ϫ ) have been calculated. The spectroscopic constants for the X 2 ⌺ ϩ , A 2 ⌸, and B 2 ⌺ ϩ states are in good agreement with the available experimental data. The dipole-allowed transition moments between the studied doublet states of SiO ϩ have also been calculated at the same theoretical level. Based on both the computed potential energy curves and the electronic transition moments, radiative lifetimes for the bound electronic excited states at the vЈ ϭ 0, 1, and 2 vibrational levels have been calculated. The lifetimes of the B 2 ⌺ ϩ (vЈ ϭ 0, 1, and 2) states are in excellent agreement with recent experimental data.
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