The A 2 ⌸-X 2 ⌺ ϩ transition of 174 Yb 35 Cl and 172 Yb 35 Cl has been rotationally analyzed for the first time. Doppler-limited laser excitation spectroscopy with selective detection of fluorescence was used to obtain spectra of the 0 -0 and 1-0 bands with a measurement accuracy of approximately 0.
High resolution laser spectroscopy of YbI: the A2Π←X2Σ+ transition
✍ Scribed by Kevin Noonan; Todd C Melville; Cameron S Dickinson; John A Coxon
- Book ID
- 108185051
- Publisher
- Elsevier Science
- Year
- 2003
- Tongue
- English
- Weight
- 119 KB
- Volume
- 222
- Category
- Article
- ISSN
- 0022-2852
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The A 2 -X 2 + (0,0) band of ZrN between 5620 and 5890 A has been studied using laser polarization, laser-induced fluorescence, and wavelength-resolved fluorescence spectroscopy. All the 12 branches expected from a 2 -2 + transition have been observed and assigned. Both nondegenerate and degenerate
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