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(Hyper)polarizability density analysis for open-shell molecular systems based on natural orbitals and occupation numbers

机译:基于自然轨道和占有数的开壳分子系统的(超)极化率密度分析

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We have developed a method for analyzing the (hyper)polarizabilities of open-shell molecular systems. This method employs the (hyper)polarizability densities based on the natural orbitals and occupation numbers, which enables us to analyze the contributions of odd electrons having various open-shell (diradical) characters. Within broken-symmetry, i.e., spin-unrestricted, single-determinant molecular orbital and density functional theory approaches, we can also remove the spin contamination effects on these quantities through spin projection. To do that, an approximate spin projected method has been elaborated and applied to the analysis of the (hyper)polarizability of multi-radical systems. As examples, typical open-shell singlet systems, 1,3-dipoles and rectangular graphene nanoflakes, are examined.
机译:我们已经开发了一种分析开壳分子系统的(超)极化率的方法。该方法采用基于自然轨道和占有数的(超)极化率密度,这使我们能够分析具有各种开壳(双自由基)特征的奇数电子的贡献。在破碎对称性(即自旋无限制,单行列式分子轨道和密度泛函理论方法)中,我们还可以通过自旋投影消除自旋污染对这些量的影响。为此,已经制定了近似的自旋投影方法,并将其应用于多自由基系统的(超)极化性分析。作为示例,研究了典型的开壳单线态系统,1,3-偶极子和矩形石墨烯纳米薄片。

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