Issue 17, 2011

Coriolis coupling effects in the dynamics of deep well reactions: application to the H+ + D2 reaction

Abstract

We present exact and estimated quantum differential and integral cross sections as well as product state distributions for the title reaction. We employ a time-dependent wavepacket method including all Coriolis couplings and also an adapted code where the helicity quantum number and with this the Coriolis couplings have been truncated. Results from helicity truncated as well as helicity conserving (HC) calculation are presented. The HC calculations fail to reproduce the exact results due to the influence of the centrifugal barrier. While the truncated calculation overestimate the exact integral cross sections they reproduce the features of the integral cross section very well. We also find that the product rotational state distributions are well reproduced if the maximum helicity state is chosen carefully. The helicity truncated calculations fail to give a good approximation of differential cross sections.

Graphical abstract: Coriolis coupling effects in the dynamics of deep well reactions: application to the H+ + D2 reaction

Article information

Article type
Paper
Submitted
17 Jan 2011
Accepted
01 Mar 2011
First published
29 Mar 2011

Phys. Chem. Chem. Phys., 2011,13, 7948-7960

Coriolis coupling effects in the dynamics of deep well reactions: application to the H+ + D2 reaction

M. Hankel, Phys. Chem. Chem. Phys., 2011, 13, 7948 DOI: 10.1039/C1CP20144A

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