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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Charge Density Analysis of Triplet and Broken Symmetry States Relevant to Magnetie Couping in Systems with Localized Spin Moments
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Charge Density Analysis of Triplet and Broken Symmetry States Relevant to Magnetie Couping in Systems with Localized Spin Moments

机译:具有局部自旋矩的系统中与磁耦合有关的三重态和对称对称态的电荷密度分析

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摘要

Comparison of electron charge density for triplet and broken symmetry solutions obtained from different computational methods together with the atoms-in-molecules (AIM) and electron localization function (ELP) topological analyses support the description of these systems through the Heisenberg Hamiltonian. The reduction of the low-energy spectrum to a purely spin Hamiltonian holds for all studied methods, although local density approximation (LDA) exhibits some noticeable deviation. The analysis of charge difference density plots clearly shows that the failure of LOA to describe magnetic coupling is due to the too-strong delocalization that leads to a qualitatively incorrect electron density in the region near the nuclei. Gradient-corrected and hybrid functionals correct this defect but in an exaggerated way. The role of mixing Fock exchange is also discussed.
机译:通过不同的计算方法获得的三重态和破坏对称溶液的电子电荷密度以及分子内原子(AIM)和电子定位功能(ELP)拓扑分析的比较支持通过Heisenberg Hamiltonian对这些系统的描述。尽管局部密度近似(LDA)表现出一些明显的偏差,但所有研究方法均将低能谱降低为纯自旋哈密顿量。电荷差密度图的分析清楚地表明,LOA无法描述磁耦合是由于过强的离域作用,这会导致在原子核附近的区域内定性地产生错误的电子密度。渐变校正和混合功能可以纠正此缺陷,但以夸张的方式。还讨论了混合Fock交换的作用。

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