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强关联分子体系激发态的系综密度泛函理论方法

Ensemble DFT Approach to Excited States of Strongly Correlated Molecular Systems.

作者信息

Filatov Michael

机构信息

Institut für Physikalische und Theoretische Chemie, Universität Bonn, Beringstr. 4, 53115, Bonn, Germany,

出版信息

Top Curr Chem. 2016;368:97-124. doi: 10.1007/128_2015_630.

Abstract

Ensemble density functional theory (DFT) is a novel time-independent formalism for obtaining excitation energies of many-body fermionic systems. A considerable advantage of ensemble DFT over the more common Kohn-Sham (KS) DFT and time-dependent DFT formalisms is that it enables one to account for strong non-dynamic electron correlation in the ground and excited states of molecular systems in a transparent and accurate fashion. Despite its positive aspects, ensemble DFT has not so far found its way into the repertoire of methods of modern computational chemistry, probably because of the perceived lack of practically affordable implementations of the theory. The spin-restricted ensemble-referenced KS (REKS) method is perhaps the first computationally feasible implementation of the ideas behind ensemble DFT which enables one to describe accurately electronic transitions in a wide class of molecular systems, including strongly correlated molecules (biradicals, molecules undergoing bond breaking/formation), extended π-conjugated systems, donor-acceptor charge transfer adducts, etc.

摘要

系综密度泛函理论(DFT)是一种用于获取多体费米子系统激发能的新型与时间无关的形式体系。与更常见的科恩-沙姆(KS)DFT和含时DFT形式体系相比,系综DFT的一个显著优势在于,它能够以一种透明且准确的方式考虑分子系统基态和激发态中的强非动态电子关联。尽管有其积极方面,但系综DFT至今尚未进入现代计算化学方法的范畴,这可能是因为人们认为该理论缺乏实际可行的实现方式。自旋限制系综参考KS(REKS)方法或许是系综DFT背后思想的首个计算上可行的实现方式,它能够准确描述广泛的分子系统中的电子跃迁,包括强关联分子(双自由基、经历键断裂/形成的分子)、扩展的π共轭体系、供体-受体电荷转移加合物等。

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