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首页> 外文期刊>The Journal of Chemical Physics >Analytic derivatives for perturbatively corrected 'double hybrid' density functionals: Theory, implementation, and applications
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Analytic derivatives for perturbatively corrected 'double hybrid' density functionals: Theory, implementation, and applications

机译:扰动校正的“双混合”密度泛函的解析导数:理论,实施和应用

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A recently proposed new family of density functionals [S. Grimme, J. Chem. Phys. 124, 34108 (2006)] adds a fraction of nonlocal correlation as a new ingredient to density functional theory (DFT). This fractional correlation energy is calculated at the level of second-order many-body perturbation theory (PT2) and replaces some of the semilocal DFT correlation of standard hybrid DFT methods. The new "double hybrid" functionals (termed, e.g., B2-PLYP) contain only two empirical parameters that have been adjusted in thermochemical calculations on parts of the G2/3 benchmark set. The methods have provided the lowest errors ever obtained by any DFT method for the full G3 set of molecules. In this work, the applicability of the new functionals is extended to the exploration of potential energy surfaces with analytic gradients. The theory of the analytic gradient largely follows the standard theory of PT2 gradients with some additional subtleties due to the presence of the exchange-correlation terms in the self-consistent field operator. An implementation is reported for closed-shell as well as spin-unrestricted reference determinants. Furthermore, the implementation includes external point charge fields and also accommodates continuum solvation models at the level of the conductor like screening model. The density fitting resolution of the identity (RI) approximation can be applied to the evaluation of the PT2 part with large gains in computational efficiency. For systems with similar to 500-600 basis functions the evaluation of the double hybrid gradient is approximately four times more expensive than the calculation of the standard hybrid DFT gradient. Extensive test calculations are provided for main group elements and transition metal containing species. The results reveal that the B2-PLYP functional provides excellent molecular geometries that are superior compared to those from standard DFT and MP2. (c) 2007 American Institute of Physics.
机译:最近提出的新的密度泛函族[S.格里姆,化学杂志。物理124,34108(2006)]将一部分非局部相关性作为密度泛函理论(DFT)的新成分。这种分数相关能量是在二阶多体扰动理论(PT2)的水平上计算的,它替代了标准混合DFT方法的一些半局部DFT相关。新的“双重混合”功能(例如B2-PLYP)仅包含两个经验参数,这些参数已在G2 / 3基准测试集的某些部分的热化学计算中进行了调整。对于完整的G3分子集,这些方法提供了任何DFT方法所获得的最低误差。在这项工作中,新功能的适用性扩展到了具有解析梯度的势能面的探索。由于自洽场算子中存在交换相关项,因此解析梯度的理论在很大程度上遵循PT2梯度的标准理论,并带有一些其他细微之处。报道了封闭壳以及自旋无限制参考决定簇的实现。此外,该实现包括外部点电荷场,并且还可以在导体级别(如屏蔽模型)容纳连续介质模型。身份(RI)近似的密度拟合分辨率可以应用于PT2部件的评估,并且在计算效率上有很大的提高。对于具有类似500-600基函数的系统,双重混合梯度的评估大约比标准混合DFT梯度的计算贵四倍。提供了对主族元素和含过渡金属物种的广泛测试计算。结果表明,与标准DFT和MP2相比,B2-PLYP官能团具有出色的分子几何结构。 (c)2007年美国物理研究所。

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