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相互作用量子原子能量分解到激发态的快速近似扩展。

A fast approximate extension of the interacting quantum atoms energy decomposition to excited states.

作者信息

Jara-Cortés Jesús, Matta Chérif F, Hernández-Trujillo Jesús

机构信息

Unidad Académica de Ciencias Básicas e Ingenierías, Universidad Autónoma de Nayarit, Tepic, Mexico.

Department of Chemistry and Physics, Mount Saint Vincent University, Halifax, Nova Scotia, Canada.

出版信息

J Comput Chem. 2022 Jun 15;43(16):1068-1078. doi: 10.1002/jcc.26863. Epub 2022 Apr 26.

Abstract

An approach is developed for the fast calculation of the interacting quantum atoms energy decomposition (IQA) from the information contained in the first order reduced density matrix only. The proposed methodology utilizes an approximate exchange-correlation density from Density Matrix Functional Theory without the need to evaluate the correlation-exchange contribution directly. Instead, weight factors are estimated to decompose the exact V into atomic and pairwise contributions. In this way, the sum of the IQA contributions recovers the energy obtained from the electronic structure calculation. This method can, hence, be applied to obtain atomic contributions in excited states on the same footing as in their ground states using any method that delivers the reduced first-order density matrix. In this way, one can locate chromophores from first principles quantum chemical calculations. Test calculations on the ground and excited states of a set of small molecules indicate that the scaled atomic contributions reproduce vertical electronic transition energies calculated exactly. This approach may be useful to extend the applicability of the IQA approach in the study of large photochemical systems especially when the calculations of the second order reduced density matrices is prohibitive or not possible.

摘要

开发了一种仅从一阶约化密度矩阵所包含的信息快速计算相互作用量子原子能量分解(IQA)的方法。所提出的方法利用密度矩阵泛函理论中的近似交换关联密度,而无需直接评估关联 - 交换贡献。相反,估计权重因子以将精确的V分解为原子贡献和成对贡献。通过这种方式,IQA贡献的总和恢复了从电子结构计算中获得的能量。因此,该方法可以应用于使用任何能提供约化一阶密度矩阵的方法,以与基态相同的方式获得激发态的原子贡献。通过这种方式,可以从第一性原理量子化学计算中定位发色团。对一组小分子的基态和激发态进行的测试计算表明,缩放后的原子贡献能够精确再现计算得到的垂直电子跃迁能量。这种方法可能有助于扩展IQA方法在大型光化学系统研究中的适用性,特别是当二阶约化密度矩阵的计算成本过高或无法进行时。

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