4.7 Article

Simulation of the photodynamics of azobenzene on its first excited state:: Comparison of full multiple spawning and surface hopping treatments -: art. no. 234308

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 123, Issue 23, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.2134705

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We have studied the cis -> trans and trans -> cis photoisomerization of azobenzene after n ->pi(*) excitation using the full multiple spawning (FMS) method for nonadiabatic wave-packet dynamics with potential-energy surfaces and couplings determined on the fly from a reparametrized multiconfigurational semiempirical method. We compare the FMS results with a previous direct dynamics treatment using the same potential-energy surfaces and couplings, but with the nonadiabatic dynamics modeled using a semiclassical surface hopping (SH) method. We concentrate on the dynamical effects that determine the photoisomerization quantum yields, namely, the rate of radiationless electronic relaxation and the character of motion along the reaction coordinate. The quantal and semiclassical results are in good general agreement, confirming our previous analysis of the photodynamics. The SH method slightly overestimates the rate of excited state decay, leading in this case to lower quantum yields. (c) 2005 American Institute of Physics.

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