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通过局部增强径向网格实现高效的密度泛函理论积分。

Efficient density-functional theory integrations by locally augmented radial grids.

作者信息

Gräfenstein Jürgen, Cremer Dieter

机构信息

Department of Chemistry, Göteborg University, S-412 96 Göteborg, Sweden.

出版信息

J Chem Phys. 2007 Oct 28;127(16):164113. doi: 10.1063/1.2794038.

Abstract

Standard density-functional theory integration grids have proven insufficient for the meta generalized gradient approximation description of weakly bound complexes [E. R. Johnson et al., Chem. Phys. Lett. 394, 334 (2004)]. This is caused by an insufficient radial resolution in the valence region of frequently used standard grids. We present an algorithm for the construction of locally augmented radial grids, which allows us to enhance the resolution of a given radial grid in a specified region, thus increasing the accuracy of the standard grid in a cost-efficient way. Test calculations with the Van Voorhis-Scuseria exchange and correlation functional for the Ar dimer confirm that a suitably constructed, locally augmented radial grid with 100 points provides an accuracy competitive to that of a 250-point nonaugmented grid. Time savings and possible applications for locally augmented radial grids are discussed.

摘要

标准密度泛函理论积分网格已被证明不足以用于弱束缚复合物的元广义梯度近似描述[E. R. 约翰逊等人,《化学物理快报》394, 334 (2004)]。这是由于常用标准网格在价层区域的径向分辨率不足所致。我们提出了一种构建局部增强径向网格的算法,该算法使我们能够在指定区域提高给定径向网格的分辨率,从而以经济高效的方式提高标准网格的精度。使用范·沃里斯 - 斯库西亚交换关联泛函对氩二聚体进行的测试计算证实,一个适当构建的具有100个点的局部增强径向网格提供的精度可与250个点的非增强网格相媲美。文中还讨论了局部增强径向网格在时间节省方面的优势以及可能的应用。

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