The rotationally resolved symmetric 2OH excitation in H2O-CO2 observed using pulsed supersonic expansion and CW-CRDS

Bogomolov, Alexandr;Roucou, Anthony;Bejjani, Raghed;Herman, M.;Lauzin, Clément;et.al.
(2021) Chemical Physics Letters — Vol. 774, n° 1, p. 138606 (2021)

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Authors
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  • Roucou, AnthonyUCLouvain
    Author
  • Bejjani, Raghedorcid-logoUCLouvain
    Author
  • Herman, M.Faculté des Sciences, Université libre de Bruxelles (ULB), 50 ave. F-D Roosevelt, B-1050, Brussels, Belgium
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Abstract
The rovibrational band corresponding to a double excitation of the OH symmetric stretch of the H2O unit in the H2O-CO2 van der Waals complex has been recorded using CW-CRDS and a pulsed slit expansion seeded with He. The set-up is presented. The rotational analysis of this band is detailed and the results of the global fit of these data with those of the other 2OH excitation band and of the ground vibrational states are reported including data from the literature. The tunneling frequency and the vibrational predissociation lifetime are shown to decrease with vibrational excitation.
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Citations

Bogomolov, A., Roucou, A., Bejjani, R., Herman, M., Moazzen-Ahmadi, N., & Lauzin, C. (2021). The rotationally resolved symmetric 2OH excitation in H2O-CO2 observed using pulsed supersonic expansion and CW-CRDS. Chemical Physics Letters, 774(1), 138606. https://doi.org/10.1016/j.cplett.2021.138606 (Original work published 2021)