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Electron Invariants and Excited State Structural Analysis for Electronic Transitions Within CIS, RPA, and TDDFT Models

机译:CIS,RPA和TDDFT模型中电子跃迁的电子不变量和激发态结构分析

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摘要

We revisit the interpretative scheme (Luzanov et al., Theor Exp Chem 1974, 10, 354) of singly excited configuration interaction (CIS) model given earlier at semiempirical level. Detailed computations and spectral (natural orbital) treatment of the CIS density matrices of various types are presented. The corresponding hole-particle densities and related excitation localization indices are described. All the quantities are extended to the excited states calculated in the random phase approximation and closely related time-dependent density functional theory (TDDFT). The localization indices and charge transfer numbers which are invoked to describe interfragment interactions provide a basis for Our scheme which is referred to as the excited state structural analysis for electronic transitions. The proposed analysis is exemplified by various moderate and large-size conjugated molecules treated within ab initio TDDFT and the Parizer-Parr-Pople approximation. Finally, we propose a possible generalization to the electronic transitions between CIS-like states followed by applications to singlet organic biradicals treated within the pi-electron spin-flip CIS.
机译:我们在半经验水平上重新讨论了单激发构型相互作用(CIS)模型的解释方案(Luzanov等,Theor Exp Chem 1974,10,354)。介绍了各种类型的CIS密度矩阵的详细计算和光谱(自然轨道)处理。描述了相应的空穴粒子密度和相关的激发定位指数。所有数量都扩展到在随机相位近似和紧密相关的时变密度泛函理论(TDDFT)中计算出的激发态。用来描述片段间相互作用的定位指数和电荷转移数为我们的方案提供了基础,我们的方案被称为电子跃迁的激发态结构分析。所提出的分析通过从头算TDDFT和Parizer-Parr-Pople近似处理的各种中型和大型共轭分子得到了例证。最后,我们提出了对类CIS状态之间电子跃迁的可能概括,然后应用于在pi电子自旋翻转CIS中处理的单重有机双基。

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