## 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
Electric dipole moments and hyperfine structure of SrF A 2Π and B 2Σ+
✍ Scribed by J. Kändler; T. Martell; W.E. Ernst
- Publisher
- Elsevier Science
- Year
- 1989
- Tongue
- English
- Weight
- 424 KB
- Volume
- 155
- Category
- Article
- ISSN
- 0009-2614
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✦ Synopsis
The Stark effect of individual rotational lines of the A 'n-X *Z+ and B 'Z+-X %+ systems of %F was measured by applying high-resolution laser spectroscopy to a molecular beam. The excited-state dipole moments could be determined as h(A%) = 2.064( SO) D and p(B'Z+) =0.91(4) D, the absolute error of the measurements given in parentheses. While the hyperfine structure splittings of rotational levels in the A'lI state were less than 3 MHz, in the B %+ state the magnetic hfs parameter b could be obtained from the zero-field B-X spectra as b(B %+) = 14.0(4.6) MHz.
📜 SIMILAR VOLUMES
The dipole moment of NO(B 2I-1) was determined for the first time by high resolution laser-induced fluorescence molecular beam spectroscopy. Specific values obtained are as follows: /x(v' = 3) = 0.2933 D, /x(v' = 4) = 0.2769 D and /x(v' = 5)= 0.2617 D. An RKR analysis allowed the first two moments o
Sub-Doppler optical-optical double-resonance spectra of SrF were recorded using two single-mode cw dye lasers. Via the intermediate state B \*Z+, the F -'Z+ and G ?T states were observed in the 32000 to 35000 cm-' region above the ground state. The (1, 0), (2,0), and (3,0) bands of the F'C+-B 'Z+ tr
The electric dipole transition moments of the He; molecular ion between its two lowest 'X: states and its first six excited %+ states are computed at various internuclear distances between 0.8 and 4.0 a,. The results are obtained with two different A0 ba8sis sets at the multireference CI level of tr