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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Relativistic Two-Component Multireference Configuration Interaction Method with Tunable Correlation Space
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Relativistic Two-Component Multireference Configuration Interaction Method with Tunable Correlation Space

机译:具有可调谐相关空间的相对论双组分多引导配置交互方法

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摘要

The multiconfiguration nature of late-row (>= 4th) elements and their molecular complexes, combined with significant relativistic effects, present large challenges for the accurate description of their electronic structure. To address these challenges and incorporate both relativistic and electron correlation effects, we present a two-component Kramers-unrestricted multireference configuration interaction method where relativistic effects are included variationally at the molecular orbital level via use of the "exact two-component" transformation of the solution of the one-electron modified Dirac equation. This method is developed within the restricted active space framework, allowing flexibility in both the choice of correlation space and the level of truncation of the excitation operator, as well as promoting the efficiency of generating and bookkeeping unique electronic configurations. This method is applied to the study of fine structure splitting in selected p-block and d-block elements and is further applied to the study of the open-shell heavy-element uranium(V) ion.
机译:具有显着相对论效应的后排(> =第4个)元件及其分子复合物的多组件杂化性质,对其电子结构的准确描述具有大量挑战。为了解决这些挑战并纳入相对论和电子相关效果,我们呈现了一种双组分克拉姆 - 不受限制的多引导配置相互作用方法,其中通过使用“精确的双组分”转化来包括相对论效应在分子轨道水平上变异。单电子改性DIRAC方程的解。该方法是在受限的主动空间框架内开发的,允许灵活性在选择相关空间的选择和激励操作员的截断水平,以及促进生成和簿记唯一电子配置的效率。该方法应用于选定的p嵌段和D嵌段元件中的细结构分裂的研究,进一步应用于开壳重元素铀(V)离子的研究。

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