Vibronic coupling in Frenkel and charge-transfer states of oligothiophene crystals

Stradomska, A., Kulig, W. and Petelenz, P. (2011) Vibronic coupling in Frenkel and charge-transfer states of oligothiophene crystals. Physica Status Solidi B: Basic Solid State Physics, 248(2), pp. 408-411. (doi: 10.1002/pssb.201000639)

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Publisher's URL: http://doi.wiley.com/10.1002/pssb.201000639

Abstract

A novel approach, recently proposed to describe exciton– phonon coupling in Frenkel states of an infinite molecular crystal, is generalized to incorporate charge-transfer (CT) excitons. Both types of electronic excitations are treated on the same footing. The corresponding Hamiltonian in the Lang– Firsov representation is subdivided into subspaces representing one-particle, two-particle, etc., excitations, and (after truncat- ing the basis set to manageable size) numerically diagonalized to yield the absorption as well as the electroabsorption (EA) spectrum. The emphasis is on the latter, previously reproduced only in the limiting cases of weak or strong vibronic coupling. The calculations are presented for the sexithiophene crystal, with parameterization based on independent experimental and theoretical estimates.

Item Type:Articles
Keywords:Frenkel excitons, charge-transfer excitons, electroabsorption, sexithiophene
Status:Published
Refereed:Yes
Glasgow Author(s) Enlighten ID:Stradomska-Szymczak, Dr Anna
Authors: Stradomska, A., Kulig, W., and Petelenz, P.
Subjects:Q Science > QC Physics
Q Science > QD Chemistry
College/School:College of Science and Engineering > School of Chemistry
Journal Name:Physica Status Solidi B: Basic Solid State Physics
Publisher:Wiley-VCH Verlag
ISSN:0370-1972
ISSN (Online):1521-3951

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