TY - JOUR
T1 - Photoinduced multi-mode quantum dynamics of pyrrole at the 1π σ*- S0 conical intersections
AU - Lan, Zhenggang
AU - Dupays, Arnaud
AU - Vallet, Valérie
AU - Mahapatra, Susanta
AU - Domcke, Wolfgang
N1 - Funding Information:
This work has been supported by the Deutsche Forschungsgemeinschaft and the Fonds der Chemischen Industrie. The authors wish to thank the Leibniz Rechenzentrum der Bayerischen Akademie der Wissenschaften for providing an ample amount of computer time. A.D. and V.V. acknowledge support by an Alexander von Humboldt research fellowship. V.V. also thanks the Centre d’Études et de Recherches Lasers et Applications, which is supported by Ministère Chargé de la Recherche, Région Nord/Pas-de-Calais and the Fonds Européen de Développement Économique des Régions (FEDER).
PY - 2007/8/15
Y1 - 2007/8/15
N2 - The photoinduced dynamics of pyrrole at the 1A2 (π σ*)- S0 and 1B1 (π σ*)- S0 conical intersections has been investigated by multi-mode time-dependent quantum wave-packet calculations. Diabatic potential-energy surfaces have been constructed for both conical intersection using accurate multi-reference ab initio electronic-structure calculations. In addition to the NH stretching coordinate, the three (four) symmetry-allowed coupling modes of A2 (B1) symmetry have been considered for the 1A2 (π σ*)- S0 (B1 (π σ*)- S0) conical intersections. Wave-packet dynamics calculations have been performed for three-dimensional models, taking account of the two dominant coupling modes of each conical intersection. The electronic population-transfer processes at the conical intersections, the branching ratio for the dissociation to the ground and excited states of the pyrrolyl radical, and their dependence on the initial preparation of the system have been investigated. It is shown that the excitation of the NH stretching mode strongly enhances the photodissociation rate, while the excitation of the strongest coupling mode has a pronounced effect on the branching ratio of the photodissociation process. Although the inclusion of the second (weaker) coupling mode has little effect on the electronic population dynamics, it leads to interesting changes of the nodal pattern of the wave packet at the conical intersections. The calculations provide insight into the effect of the multiple coupling modes on the process of direct photodissociation through a conical intersection.
AB - The photoinduced dynamics of pyrrole at the 1A2 (π σ*)- S0 and 1B1 (π σ*)- S0 conical intersections has been investigated by multi-mode time-dependent quantum wave-packet calculations. Diabatic potential-energy surfaces have been constructed for both conical intersection using accurate multi-reference ab initio electronic-structure calculations. In addition to the NH stretching coordinate, the three (four) symmetry-allowed coupling modes of A2 (B1) symmetry have been considered for the 1A2 (π σ*)- S0 (B1 (π σ*)- S0) conical intersections. Wave-packet dynamics calculations have been performed for three-dimensional models, taking account of the two dominant coupling modes of each conical intersection. The electronic population-transfer processes at the conical intersections, the branching ratio for the dissociation to the ground and excited states of the pyrrolyl radical, and their dependence on the initial preparation of the system have been investigated. It is shown that the excitation of the NH stretching mode strongly enhances the photodissociation rate, while the excitation of the strongest coupling mode has a pronounced effect on the branching ratio of the photodissociation process. Although the inclusion of the second (weaker) coupling mode has little effect on the electronic population dynamics, it leads to interesting changes of the nodal pattern of the wave packet at the conical intersections. The calculations provide insight into the effect of the multiple coupling modes on the process of direct photodissociation through a conical intersection.
KW - Conical intersections
KW - Photochemistry of pyrrole
KW - Photodissociation of pyrrole
KW - Wavepacket
KW - π σ state
UR - https://www.scopus.com/pages/publications/34447619686
U2 - 10.1016/j.jphotochem.2007.01.018
DO - 10.1016/j.jphotochem.2007.01.018
M3 - Article
AN - SCOPUS:34447619686
SN - 1010-6030
VL - 190
SP - 177
EP - 189
JO - Journal of Photochemistry and Photobiology A: Chemistry
JF - Journal of Photochemistry and Photobiology A: Chemistry
IS - 2-3
ER -