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首页> 外文期刊>The Journal of Chemical Physics >A long-range-corrected density functional that performs well for both ground-state properties and time-dependent density functional theory excitation energies, including charge-transfer excited states
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A long-range-corrected density functional that performs well for both ground-state properties and time-dependent density functional theory excitation energies, including charge-transfer excited states

机译:一种远程校正的密度泛函,对于基态性质和随时间变化的密度泛函理论激发能(包括电荷转移激发态)均表现良好

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摘要

We introduce a hybrid density functional that asymptotically incorporates full Hartree-Fock exchange, based on the long-range-corrected exchange-hole model of Henderson [J. Chem. Phys. 128, 194105 (2008)]. The performance of this functional, for ground-state properties and for vertical excitation energies within time-dependent density functional theory, is systematically evaluated, and optimal values are determined for the range-separation parameter, omega, and for the fraction of short-range Hartree-Fock exchange. We denote the new functional as LRC-omega PBEh, since it reduces to the standard PBEh hybrid functional (also known as PBE0 or PBE1PBE) for a certain choice of its two parameters. Upon optimization of these parameters against a set of ground- and excited-state benchmarks, the LRC-omega PBEh functional fulfills three important requirements: (i) It outperforms the PBEh hybrid functional for ground-state atomization energies and reaction barrier heights; (ii) it yields statistical errors comparable to PBEh for valence excitation energies in both small and medium-sized molecules; and (iii) its performance for charge-transfer excitations is comparable to its performance for valence excitations. LRC-omega PBEh, with the parameters determined herein, is the first density functional that satisfies all three criteria. Notably, short-range Hartree-Fock exchange appears to be necessary in order to obtain accurate ground-state properties and vertical excitation energies using the same value of omega.
机译:我们基于Henderson的远程校正交换孔模型,引入了一种渐近合并了完整Hartree-Fock交换的混合密度泛函[J.化学物理128,194105(2008)]。系统地评估了该函数在基态特性和时间依赖性密度泛函理论中对于垂直激发能量的性能,并确定了范围分离参数ω和短程分数的最佳值Hartree-Fock交流。我们将新功能表示为LRC-omega PBEh,因为对于其两个参数的某些选择,它简化为标准PBEh混合功能(也称为PBE0或PBE1PBE)。根据一组基态和激发态基准优化这些参数后,LRC-omega PBEh功能满足三个重要要求:(i)在基态雾化能量和反应势垒高度方面,其性能优于PBEh混合功能; (ii)对于中小分子的化合价激发能,产生的统计误差与PBEh相当; (iii)电荷转移激发的性能可与价激发激发的性能相媲美。具有此处确定的参数的LRC-ωPBEh是满足所有三个标准的第一个密度函数。值得注意的是,短距离的Hartree-Fock交换似乎是必要的,以便使用相同的ω值获得准确的基态特性和垂直激发能。

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