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显式关联多参考组态相互作用与多个参考函数:避免交叉和锥形交叉。

Explicitly correlated multireference configuration interaction with multiple reference functions: avoided crossings and conical intersections.

机构信息

Institut für Theoretische Chemie, Universität Stuttgart, Stuttgart, Germany.

出版信息

J Chem Phys. 2011 May 14;134(18):184104. doi: 10.1063/1.3587632.

Abstract

We develop an explicitly correlated multireference configuration interaction method (MRCI-F12) with multiple reference functions. It can be routinely applied to nearly degenerate molecular electronic structures near conical intersections and avoided crossings, where the reference functions are strongly mixed in the correlated wave function. This work is a generalization of the MRCI-F12 method for electronic ground states, reported earlier by Shiozaki et al. [J. Chem. Phys. 134, 034113 (2011)]. The so-called F12b approximation is used to arrive at computationally efficient formulas. The doubly external part of the wave function is expanded in terms of internally contracted configurations generated from all the reference functions. In addition, we introduce a singles correction to the CASSCF reference energies, which is applicable to multi-state calculations. As examples, we present numerical results for the avoided crossing of LiF, excited states of ozone, and the H(2) + OH (A(2)Σ(+)) reaction.

摘要

我们开发了一种具有多个参考函数的显式相关多参考组态相互作用方法 (MRCI-F12)。它可以常规地应用于近简并分子电子结构附近的圆锥交叉和避免交叉,其中相关波函数中参考函数强烈混合。这项工作是 Shiozaki 等人[J. Chem. Phys. 134, 034113 (2011)]早些时候报道的电子基态 MRCI-F12 方法的推广。所谓的 F12b 近似用于获得计算效率高的公式。波函数的双外部部分展开为来自所有参考函数的内部收缩配置。此外,我们引入了对 CASSCF 参考能的单电子校正,该校正适用于多态计算。作为示例,我们给出了 LiF 的避免交叉、臭氧的激发态和 H(2) + OH (A(2)Σ(+))反应的数值结果。

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