A Quantum wave packet dynamical study of the electronic and spin-orbit coupling effects on the resonances in Cl(<sup>2</sup>P) + H<inf>2</inf> scattering

No Thumbnail Available
Date
2005-03-03
Authors
Ghosal, Subhas
Mahapatra, Susanta
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
Dynamical resonances in Cl(2P) + H2 scattering are investigated with the aid of a time-dependent wave packet approach using the Capecchi-Werner coupled ab initio potential energy surfaces [Phys. Chem. Chem. Phys. 2004, 6, 4975]. The resonances arising from the prereactive van der Waals well (∼0.5 kcal/mol) and the transition-state (TS) region of the 2∑1/2 ground spin-oibit (SO) state of the Cl( 2P) + H2 system are calculated and assigned by computing their eigenfunctions and lifetimes. The excitation of even quanta along the bending coordinate of the resonances is observed. The resonances exhibit an extended van der Waals progression, which can be attributed to the dissociative states of ClH2. Excitation of H2 vibration is also identified in the high-energy resonances. The effect of the excited 2PH1/2 SO state of Cl on these resonances is examined by considering the electronic and SO coupling in the dynamical simulations. While the electronic coupling has only a minor impact on the resonance structures, the SO coupling has significant effect on them. The nonadiabatic effect due to the SO coupling'is stronger, and as a result, the spectrum becomes broad and diffuse particularly at high energies. We also report the photodetachment spectrum of ClDH2- and compare the theoretical findings with the available experimental results. © 2005 American Chemical Society.
Description
Keywords
Citation
Journal of Physical Chemistry A. v.109(8)