Rigid-Bender Close-Coupling Treatment of the Inelastic Collisions of H2O with para-H-2

Stoecklin T.; Denis-Alpizar O.; Clergerie A.; Halvick P.; Faure A.; Scribano Y.

Abstract

We present a new method taking explicitly into account the coupling between rotation and bending of a nonlinear triatomic molecule colliding with an atom. This approach based on a rigid-bender treatment of the triatomic molecule was originally developed for the case of triatomic molecule linear at equilibrium. It is here extended to the case of a colliding bent triatomic molecule at equilibrium and applied to the case of the para-H-2 + H2O inelastic collision using a new H2O-para-H-2 adiabatically reduced 4D potential. The results of the method for purely rotational transitions are compared to those of rigid-rotor calculations while vibrational quenching rates of the first exited bending level are calculated for the first time at the close-coupling level.

Más información

Título según WOS: Rigid-Bender Close-Coupling Treatment of the Inelastic Collisions of H2O with para-H-2
Título según SCOPUS: Rigid-bender close-coupling treatment of the inelastic collisions of h2o with para-h2
Título de la Revista: JOURNAL OF PHYSICAL CHEMISTRY A
Volumen: 123
Número: 27
Editorial: AMER CHEMICAL SOC
Fecha de publicación: 2019
Página de inicio: 5704
Página final: 5712
Idioma: English
DOI:

10.1021/acs.jpca.9b04052

Notas: ISI, SCOPUS