Electronic spectroscopy of <sup>~</sup>A-<sup>~</sup>X transitions of jet-cooled calcium monoalkoxide radicals: spin-ro-vibronic structure of nonlinear polyatomic molecules as candidates for direct laser cooling
ORAL
Abstract
*J.L. gratefully acknowledges the American Physical Scieient and the Gordon and Betty Moore Foundation for their support through a Fundamental Physics Innovation Award (2018).
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Publication: 1. "A combined experimental and computational study on the ~??12A'/~??22A''-~??2A' transition of the calcium isopropoxide radical as a candidate for direct laser cooling", H. Telfah, K. Sharma, A. C. Paul, S. M. S. Riyadh, T. A. Miller, and J. Liu, Phys. Chem. Chem. Phys. (under review).
2. "Electronic spectroscopy of the ~??12A''/~??22A'-~??2A' transition of jet-cooled calcium ethoxide radicals: Vibronic structure of alkaline earth monoalkoxide radicals of Cs symmetry", A. C. Paul, K. Sharma, H. Telfah, T. A. Miller, and J. Liu, J. Chem. Phys. 155, 024301 (2021).
3. "Laser-induced fluorescence and dispersed-fluorescence spectroscopy of the ~??2E-~??2A1 transition of jet-cooled calcium methoxide (CaOCH3) radicals" A. C. Paul, K. Sharma, Md. A. Reza, H. Telfah, T. A. Miller, and J. Liu, J. Chem. Phys. 151, 134303 (2019).
Presenters
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Jinjun Liu
- University of Louisville