High-resolution laser excitation spectra have been obtained for the 0-0, 1-1, and 0-1 bands of the B 2 + -X 2 + transition of YbCl and a rotational analysis has been performed on the 174 Yb 35 Cl and 172 Yb 35 Cl isotopomers. Comparison of the spin-rotation constant, γ , for the B 2 + state with the
Dye laser spectroscopy of the B2 Σ+ -X2Σ+ transition of CaOH
✍ Scribed by P.F. Bernath; S. Kinsey-Nielsen
- Publisher
- Elsevier Science
- Year
- 1984
- Tongue
- English
- Weight
- 298 KB
- Volume
- 105
- Category
- Article
- ISSN
- 0009-2614
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✦ Synopsis
The B 2~*-X 22* transition of CaOH has been exammed by the technique of dye laser excitation spectroscopy. The rotational structure of the 000-000 and 100-100 bands \has determined.
📜 SIMILAR VOLUMES
The forbidden \(\dot{A}(010)^{2} \Sigma^{(+)},{ }^{2} \Sigma^{(-)}-\dot{X}(000)^{2} \Sigma^{+}\)parallel bands of \(\mathrm{CaOH}\), which gain transition strength through vibronic mixing between different electronic states, have been observed via laserinduced fluorescence. The fundamental bending f
The emission spectrum of the \(\mathrm{CS}^{+} B^{2} \Sigma^{+}-X^{2} \Sigma^{+}\)transition has been recorded on photographic plates in the spectral interval \(2300-3300 \AA\), using a new emission source in which linear beams of CS radicals and He* metastables collide. Ten \(B-X\) bands were obser