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首页> 外文期刊>Journal of chemical theory and computation: JCTC >A New Mean-Field Method Suitable for Strongly Correlated Electrons: Computationally Facile Antisymmetric Products of Nonorthogonal Geminals
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A New Mean-Field Method Suitable for Strongly Correlated Electrons: Computationally Facile Antisymmetric Products of Nonorthogonal Geminals

机译:一种适用于强相关电子的新均值场方法:计算简便的非正交双键反对称产物

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摘要

We propose an approach to the electronic structure problem based on noninteracting electron pairs that has similar computational cost to conventional methods based on noninteracting electrons. In stark contrast to other approaches, the wave function is an antisymmetric product of nonorthogonal geminals, but the geminals are structured so the projected Schrodinger equation can be solved very efficiently. We focus on an approach where, in each geminal, only one of the orbitals in a reference Slater determinant is occupied. The resulting method gives good results for atoms and small molecules. It also performs well for a prototypical example of strongly correlated electronic systems, the hydrogen atom chain.
机译:我们提出了一种基于非相互作用电子对的电子结构问题的方法,该方法具有与基于非相互作用电子的常规方法相似的计算成本。与其他方法形成鲜明对比的是,波动函数是非正交双子星的反对称乘积,但是双子星是结构化的,因此可以非常有效地求解投影的薛定inger方程。我们着重研究一种方法,在每个双子星中,仅参考Slater行列式中的一个轨道被占据。所得方法对于原子和小分子给出了良好的结果。对于强相关电子系统的典型示例(氢原子链),它也表现良好。

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