Theoretical study of the dissociative recombination and rovibrational excitation of CF<sup>+</sup> in collisions with low-energy electrons
POSTER
Abstract
Preliminary results from the theoretical approach to model the dissociative recombination (DR) and ro-vibrational (de)excitation (R-(d)VE) of CF+ will be presented. The approach combines the MESA code (Molecular Electronic Structure Applications), the UK R-matrix method for fixed-nuclei electron-ion scattering, the vibronic frame transformation with outgoing-wave dissociative functions obtained using a complex absorbing potential and molecular quantum-defect theory. Comparison with previous calculation (from complex Kohn variational method and multichannel quantum defect theory) and experimental results (Test Storage Ring in Heidelberg) are shown. The study of CF+ is of relevance for astrochemistry and more specificly in diffuse interstellar media (ISM) as it regarded as a possible probe for molecular hydrogen column density.
Presenters
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Jeoffrey Boffelli
Laboratoire ONDES & MILIEUX COMPLEXES, Université Le Havre Normandie, Le Havre cedex, France
Authors
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Viatcheslav Kokoouline
University of Central Florida, University of Central Florida (United States of America)
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MEHDI Ayouz
Ecole Centrale Paris
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Joshua B Forer
University of Central Florida
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Samantha Fonseca dos Santos
Rollins College
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Ioan Schneider
Laboratoire ONDES & MILIEUX COMPLEXES, Université Le Havre Normandie, France, Laboratoire ONDES & MILIEUX COMPLEXES, Groupe de recherche PROCESSUS REACTIFS, Université Le Havre Normandie, Le Havre cedex, France
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Jeoffrey Boffelli
Laboratoire ONDES & MILIEUX COMPLEXES, Université Le Havre Normandie, Le Havre cedex, France
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Oleksii Kulyk
University of Central Florida