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The E3Π–X3Δ Transition of Jet-Cooled TiO Observed in Absorption

✍ Scribed by Kaori Kobayashi; Gregory E. Hall; James T. Muckerman; Trevor J. Sears; Anthony J. Merer


Publisher
Elsevier Science
Year
2002
Tongue
English
Weight
203 KB
Volume
212
Category
Article
ISSN
0022-2852

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✦ Synopsis


The (0,0) and (1,0) bands of the E 3 -X 3 transition of TiO in the near-infrared have been recorded by frequency modulated laser absorption spectroscopy in a laser ablation/free jet expansion source. The observed linewidths (FWHM) varied from 300 to 500 MHz according to the expansion conditions and are dominated by residual Doppler broadening in the unskimmed source. Data for the (0,0) band have been obtained for TiO molecules containing all the naturally occurring Ti isotopes but, for the weaker (1,0) band, only for 48 TiO. Rotational constants for the two upper state vibrational levels were derived by fitting the data to an effective Hamiltonian; equilibrium parameters have been calculated. The experimental results are compared to the results of ab initio calculations on the E-X system. Ab initio results for the b-a system and for the lowest 3 -state are also presented. They indicate that the D 3 -state is not a very low-lying state.


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✍ Kei-ichi C. Namiki; Haruhiko Ito 📂 Article 📅 2002 🏛 Elsevier Science 🌐 English ⚖ 136 KB

Several vibronic bands associated with v = 0, 1, and 2 for the B 3 -X 3 transition of TiO have been observed using a dispersed laser induced fluorescence (DLIF) technique. From intensity distributions of the DLIF spectra, the dependence of the electronic transition moment R e (r ) for the B 3 -X 3 s