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首页> 外文期刊>International Journal of Quantum Chemistry >Resonating Coupled-Cluster CI Approach to Ion-Radical Systems: Comparison with the Unrestricted Coupled-Cluster Approach
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Resonating Coupled-Cluster CI Approach to Ion-Radical Systems: Comparison with the Unrestricted Coupled-Cluster Approach

机译:离子耦合系统的共振耦合簇CI方法:与无限制耦合簇方法的比较

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摘要

We implemented the resonating configuration interaction (Res-CI) approach with spin-unrestricted coupled-cluster (UCC) solutions as basis for ion-radical systems. In previous studies (Nishihara et al., Int J Quantum Chem 2008, 108, 2966; Nishihara et al., J Phys: Condens Matt 2009, 21, 064227), we showed that it is possible to satisfy an important condition proposed by Perdew et al. using Res-Cl based on two complementary spin-Unrestricted Hartree-Fock solutions. In this study, we extended the method to Res-Cl calculations based on UCC solutions (Res-CC Cl) for simple ion-radical systems, which is to our knowledge, a new type of ab initio method. We examined the asymmetric effects on whether the hole (or the excess electron) localizes at one site or delocalizes over two sites. The computational results of Res-CC Cl are compared with those of UCC, and the implications are discussed.
机译:我们实现了具有自旋无限制耦合簇(UCC)解决方案的共振配置相互作用(Res-CI)方法,作为离子自由基系统的基础。在以前的研究中(Nishihara等人,Int J Quantum Chem 2008,108,2966; Nishihara等人,J Phys:Condens Matt 2009,21,064227),我们表明有可能满足Perdew提出的重要条件等。基于两个互补的自旋无限制Hartree-Fock解决方案使用Res-Cl。在这项研究中,我们将方法扩展到基于UCC解决方案(Res-CC Cl)的简单离子自由基系统的Res-Cl计算,据我们所知,这是一种新型的从头算方法。我们检查了空穴(或多余的电子)是位于一个位点还是位于两个位点之上的非对称效应。将Res-CC Cl的计算结果与UCC的计算结果进行比较,并讨论其含义。

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