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Electronic Structure Of Ruo
Yu, Yao
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https://hdl.handle.net/2142/116594
Description
- Title
- Electronic Structure Of Ruo
- Author(s)
- Yu, Yao
- Contributor(s)
- Yang, Jie
- Ma, Xinwen
- Zhang, Lei
- Issue Date
- 2022-06-21
- Keyword(s)
- Mini-symposium: Benchmarking in Spectroscopy
- Abstract
- \begin{wrapfigure}{l}{0pt} \includegraphics[scale=0.25]{Figure1.eps} \end{wrapfigure} The laser-induced fluorescence (LIF) excitation spectra of jet-cooled ruthenium monoxide (RuO) molecule in the gas phase have been investigated in the range of 13,800 to 19,250 cm$^{-1}$. As shown in the figure, a total of sixteen vibronic bands were experimentally observed and grouped into the transition systems from the ground $X^{5}\Delta_{4}$ and $X^{5}\Delta_{3}$ states to six excited electronic states, labeled as $[15.07]3-X^{5}\Delta_{4}$, $[16.05]5-X^{5}\Delta_{4}$, $[16.43]3-X^{5}\Delta_{4}$, $[16.19]4-X^{5}\Delta_{4,3}$, $[18.09]4-X^{5}\Delta_{4,3}$, $[18.46]3-X^{5}\Delta_{4,3}$. The spin-orbit splitting and the rotational constants in the lower and upper states were obtained accurately by the rotationally and isotopically resolved LIF spectra. In addition, the single-vibronic-level (SVL) emission spectra from the excited states were recorded, and the vibrational constants in the ground $X^{5}\Delta_{4}$ and $X^{5}\Delta_{3}$ states were obtained. Our results are sufficiently reliable and accurate to guide spectroscopists on further studies of RuO molecule.
- Publisher
- International Symposium on Molecular Spectroscopy
- Type of Resource
- text
- Language
- eng
- Handle URL
- https://hdl.handle.net/2142/116594
- DOI
- https://doi.org/10.15278/isms.2022.TB02
- Copyright and License Information
- Copyright 2022 held by the authors
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