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Spectral densities for Frenkel exciton dynamics in molecular crystals: A TD-DFTB approach.

Authors :
Plötz PA
Megow J
Niehaus T
Kühn O
Source :
The Journal of chemical physics [J Chem Phys] 2017 Feb 28; Vol. 146 (8), pp. 084112.
Publication Year :
2017

Abstract

Effects of thermal fluctuations on the electronic excitation energies and intermonomeric Coulomb couplings are investigated for a perylene-tetracarboxylic-diimide crystal. To this end, time dependent density functional theory based tight binding (TD-DFTB) in the linear response formulation is used in combination with electronic ground state classical molecular dynamics. As a result, a parametrized Frenkel exciton Hamiltonian is obtained, with the effect of exciton-vibrational coupling being described by spectral densities. Employing dynamically defined normal modes, these spectral densities are analyzed in great detail, thus providing insight into the effect of specific intramolecular motions on excitation energies and Coulomb couplings. This distinguishes the present method from approaches using fixed transition densities. The efficiency by which intramolecular contributions to the spectral density can be calculated is a clear advantage of this method as compared with standard TD-DFT.

Details

Language :
English
ISSN :
1089-7690
Volume :
146
Issue :
8
Database :
MEDLINE
Journal :
The Journal of chemical physics
Publication Type :
Academic Journal
Accession number :
28249454
Full Text :
https://doi.org/10.1063/1.4976625