Theoretical dipole moment for the X 2Π state of NO
✍ Scribed by Stephen R. Langhoff; Charles W. Bauschlicher Jr.; Harry Partridge
- Publisher
- Elsevier Science
- Year
- 1994
- Tongue
- English
- Weight
- 652 KB
- Volume
- 223
- Category
- Article
- ISSN
- 0009-2614
No coin nor oath required. For personal study only.
✦ Synopsis
The dipole moment function for the X 'II state of NO is studied as a function of the completeness in both the one-and nparticle spaces. Einstein coefficients are presented that are significantly more accurate than previous tabulations for the higher vibrational levels. The theoretical values give considerable insight into the limitations of recently published ratios of Einstein coefficients measured by spectmlly resolved infrared chemihuninescence.
📜 SIMILAR VOLUMES
The dipole moment of the lowest II bending state of \((\mathrm{HCN})_{2}\) has been determined by tunable far-infrared Stark spectroscopy to be 6.023(31) D. This represents a reduction in dipole moment of \(0.54(5)\) D relative to the ground state, which is over five times too large for simple harmo
## Recent experiments by Bergeman and tire led to a dipole moment of l&l = 1 .lO k 0.03 D for the v = 3 vibrational level of the A\* C' stzte of NO, whereas conflgxation interaction (CI) stud& by Green led to p = 0.39 D (N+O-), a serious discrepancy. We report herein ab initjo generalized valence
A laser ablation source combined with a time-of-flight mass spectrometer has been constructed. The static electric field in the mass spectrometer gives rise to a first-order Stark effect splitting from which the permanent electric dipole moment of the B 1 ⌸ state (v ϭ 0) of 90 ZrO is determined and