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Increasing the applicability of density functional theory. IV. Consequences of ionization-potential improved exchange-correlation potentials

机译:增加密度泛函理论的适用性。 IV。电离势改善交换相关势的后果

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摘要

This paper's objective is to create a "consistent" mean-field based Kohn-Sham (KS) density functional theory (DFT) meaning the functional should not only provide good total energy properties, but also the corresponding KS eigenvalues should be accurate approximations to the vertical ionization potentials (VIPs) of the molecule, as the latter condition attests to the viability of the exchangecorrelation potential (VXC). None of the prominently used DFT approaches show these properties: the optimized effective potential VXC based ab initio dft does. A local, range-separated hybrid potential cam-QTP-00 is introduced as the basis for a "consistent" KS DFT approach. The computed VIPs as the negative of KS eigenvalue have a mean absolute error of 0.8 eV for an extensive set of molecule's electron ionizations, including the core. Barrier heights, equilibrium geometries, and magnetic properties obtained from the potential are in good agreement with experiment. A similar accuracy with less computational efforts can be achieved by using a non-variational global hybrid variant of the QTP-00 approach.
机译:本文的目的是创建一个基于“一致”均值场的Kohn-Sham(KS)密度泛函理论(DFT),这意味着该泛函不仅应提供良好的总能量特性,而且相应的KS特征值应与该函数精确近似。分子的垂直电离电势(VIP),因为后者条件证明了交换相关电势(VXC)的可行性。突出使用的DFT方法都没有显示出这些特性:基于VXC的从头算dft的优化有效势。引入了局部,按距离分隔的混合电势凸轮QTP-00,作为“一致的” KS DFT方法的基础。对于包括分子核在内的大量分子电子电离,计算出的VIP作为KS特征值的负值具有0.8 eV的平均绝对误差。从势能获得的势垒高度,平衡几何形状和磁性能与实验非常吻合。通过使用QTP-00方法的非变量全局混合变量,可以用较少的计算量实现相似的精度。

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