The Rotationally Resolved Infrared Spectrum of TiO and Its Isotopologues
arXiv:2105.12556 · doi:10.1016/j.jms.2021.111439
Abstract
In this study, we present the ro-vibrationally resolved gas-phase spectrum of the diatomic molecule TiO around 1000\,cm. Molecules were produced in a laser ablation source by vaporizing a pure titanium sample in the atmosphere of gaseous nitrous oxide. Adiabatically expanded gas, containing TiO, formed a supersonic jet and was probed perpendicularly to its propagation by infrared radiation from quantum cascade lasers. Fundamental bands of TiO and vibrational hotbands of TiO are identified and analyzed. In a mass-independent fitting procedure combining the new infrared data with pure rotational and electronic transitions from the literature, a Dunham-like parameterization is obtained. From the present data set, the multi-isotopic analysis allows to determine the spin-rotation coupling constant and the Born-Oppenheimer correction coefficient for the first time. The parameter set enables to calculate the Born-Oppenheimer correction coefficients and . In addition, the vibrational transition moments for the observed vibrational transitions are reported.
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References in corpus (8)
- MARVEL analysis of the measured high-resolution rovibronic spectra of TiO
- An observational study of dust nucleation in Mira ( Ceti): II. Titanium oxides are negligible for nucleation at high temperatures
- Assessing Spectra and Thermal Inversions due to TiO in Hot Jupiter Atmospheres
- Terahertz spectroscopy of NO and isotopic invariant fit of several nitric oxide isotopologs
- Rotational spectra of vibrationally excited AlO and TiO in oxygen rich stars
- Mass-independent analysis of the stable isotopologues of gas-phase titanium monoxide -- TiO
- Analysis of the TiO isotopologues in stellar optical spectra
- Isotopic Titanium Abundances in Local M Dwarfs
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