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含时密度泛函理论中的激子效应

Excitonic effects in a time-dependent density functional theory.

作者信息

Igumenshchev Kirill I, Tretiak Sergei, Chernyak Vladimir Y

机构信息

Department of Chemistry, University of Rochester, Rochester, New York 14627, USA.

出版信息

J Chem Phys. 2007 Sep 21;127(11):114902. doi: 10.1063/1.2773727.

Abstract

Excited state properties of one-dimensional molecular materials are dominated by many-body interactions resulting in strongly bound confined excitons. These effects cannot be neglected or treated as a small perturbation and should be appropriately accounted for by electronic structure methodologies. We use adiabatic time-dependent density functional theory to investigate the electronic structure of one-dimensional organic semiconductors, conjugated polymers. Various commonly used functionals are applied to calculate the lowest singlet and triplet state energies and oscillator strengths of the poly(phenylenevinylene) and ladder-type (poly)(para-phenylene) oligomers. Local density approximations and gradient-corrected functionals cannot describe bound excitonic states due to lack of an effective attractive Coulomb interaction between photoexcited electrons and holes. In contrast, hybrid density functionals, which include long-range nonlocal and nonadiabatic corrections in a form of a fraction of Hartree-Fock exchange, are able to reproduce the excitonic effects. The resulting finite exciton sizes are strongly dependent on the amount of the orbital exchange included in the functional.

摘要

一维分子材料的激发态性质由多体相互作用主导,从而产生强束缚的受限激子。这些效应不能被忽略或视为小扰动,而应由电子结构方法适当考虑。我们使用绝热含时密度泛函理论来研究一维有机半导体(共轭聚合物)的电子结构。应用各种常用泛函来计算聚对苯撑乙烯和梯型聚对苯撑低聚物的最低单重态和三重态能量以及振子强度。由于光激发电子和空穴之间缺乏有效的吸引库仑相互作用,局域密度近似和梯度校正泛函无法描述束缚激子态。相比之下,包含一定比例哈特里 - 福克交换形式的长程非局域和非绝热校正的杂化密度泛函能够重现激子效应。所得的有限激子尺寸强烈依赖于泛函中包含的轨道交换量。

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