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  4. Exact state-to-state quantum dynamics of the F+HD→HF(v′=2)+D reaction on model potential energy
 
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Exact state-to-state quantum dynamics of the F+HD→HF(v′=2)+D reaction on model potential energy

Author(s)
ASI Sponsor
De Fazio, Dario
Aquilanti, Vincenzo
Cavalli, Simonetta
Date Issued
2008-01-01
Abstract
In this paper, we present the results of a theoretical investigation on the dynamics of the title reaction at collision energies below 1.2 kcal/mol using rigorous quantum reactive scattering calculations. Vibrationally resolved integral and differential cross sections, as well as product rotational distributions, have been calculated using two electronically adiabatic potential energy surfaces, developed by us on the basis of semiempirical modifications of the entrance channel. In particular, we focus our attention on the role of the exothermicity and of the exit channel region of the interaction on the experimental observables. From the comparison between the theoretical results, insight about the main mechanisms governing the reaction is extracted, especially regarding the bimodal structure of the HF(𝑣=2) nascent rotational state distributions. A good overall agreement with molecular beam scattering experiments has been obtained.
URI
https://hdl.handle.net/20.500.13025/2440
ISSN
00219606
Journal
The Journal of Chemical Physics
Issue
6
Volume
129
DOI
54dcce0a8580fe1368eeb286
10.1063/1.2964103
URL
http://link.aip.org/link/JCPSA6/v129/i6/p064303/s1&Agg=doi
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