APS Logo

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

Alkaline earth monoalkoxide free radicals are promising candidates for laser cooling. Here we report a combined experimental and computational investigation of the spin-vibronic structure of the lowest electronic states of calcium methoxide [CaOCH3 (C3v)], ethoxide [CaOC2H5 (Cs)], and isopropoxide [CaOCH(CH3)2 (Cs)]. Laser-induced fluorescence/dispersed fluorescence (LIF/DF) and cavity ring-down spectra of the ~A-~X transitions were recorded under jet-cooled conditions. The ~A2-~A1 energy separation of vibronic levels is attributed to the spin-orbit (SO) interaction and, in the case of the two asymmetric tops, the difference potential between the A’ and A’’ states, both of which affect the rotational and fine structure of the nearly degenerate ~A1/ ~A 2 states. A spin-vibronic Hamiltonian has been developed in a quasi-diabatic basis for the spectral simulation, aided by ab initio calculations. The (pseudo-)Jahn-Teller and SO interactions induce off-diagonal Franck-Condon matrix elements, leading to vibronic transitions that are forbidden or negligible under the Born-Oppenheimer approximation.

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).<br>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). <br>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

  • Jinjun Liu

    University of Louisville

Authors

  • Anam C Paul

    University of Louisville

  • Hamzeh Telfah

    University of Louisville

  • Ketan Sharma

    The Ohio State University - Columbus

  • S. M. Shah Riyadh

    University of Louisville

  • Terry A Miller

    The Ohio State University - Columbus

  • Jinjun Liu

    University of Louisville