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首页> 外文期刊>International Journal of Quantum Chemistry >The quantum theory of atoms in positronic molecules: A case study on diatomic species
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The quantum theory of atoms in positronic molecules: A case study on diatomic species

机译:正电子分子中的原子量子理论:以双原子物种为例

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This article presents the first systematic study of a series of diatomic positronic species using the recently proposed regional approach: the quantum theory of atoms in positronic molecules (QTAIPM). This survey includes the LiH,e~+, NaH,e~+, LiF,e~+, NaF,e~+, BeO,e~+, MgO,e~+, CN-,e~+, and OH -,e~+ species as typical examples. The computational algorithm of the whole analysis is communicated and reviewed in detail. The topological analysis of the joint density distribution reveals topological structures similar to those observed for the purely electronic systems; that is, each system decomposes into two quantum atoms. By considering some of the regional properties of these quantum atoms, it is demonstrated that the positron affects them seriously through two different mechanisms: direct and indirect contributions, the latter refers to electronic and geometric relaxations. The computational results clearly reveal the fact that the regional properties of the quantum atoms of positronic molecules are not deducible from their purely electronic counterparts; thus, an independent analysis is required for each positronic molecule. The positronic population is considered as a typical regional property showing that the attachment of a positron to a purely electronic system enhances the polarization of the electronic distribution. The concept of regional positron affinities is also introduced and discussed as a nonroutine application of the QTAIPM. The results of this article set the stage for further study on the quantum atoms of polyatomic positronic species.
机译:本文使用最近提出的区域方法:正电子分子中的原子量子理论(QTAIPM),对一系列双原子正电子物种进行了首次系统研究。该调查包括LiH,e〜+,NaH,e〜+,LiF,e〜+,NaF,e〜+,BeO,e〜+,MgO,e〜+,CN-,e〜+和OH- ,e〜+种作为典型示例。整个分析的计算算法进行了详细的交流和审查。接头密度分布的拓扑分析显示出与纯电子系统相似的拓扑结构。也就是说,每个系统分解成两个量子原子。通过考虑这些量子原子的某些区域特性,可以证明正电子通过两种不同的机制对它们产生严重影响:直接和间接贡献,后者是指电子弛豫和几何弛豫。计算结果清楚地表明,不能从纯电子对应物推导正电子分子的量子原子的区域特性;因此,需要对每个正电子分子进行独立分析。正电子人口被认为是典型的区域性,表明正电子与纯电子系统的连接会增强电子分布的极化。还介绍和讨论了区域正电子亲和力的概念,作为QTAIPM的非常规应用。本文的结果为进一步研究多原子正电子物种的量子原子奠定了基础。

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