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一种基于基函数积分收缩的高效哈特里-福克方法实现。

An Efficient Hartree-Fock Implementation Based on the Contraction of Integrals in the Primitive Basis.

作者信息

Held Joseph, Hanrath Michael, Dolg Michael

机构信息

Institute for Theoretical Chemistry , University of Cologne , Greinstr. 4 , 50939 Cologne , Germany.

出版信息

J Chem Theory Comput. 2018 Dec 11;14(12):6197-6210. doi: 10.1021/acs.jctc.8b00358. Epub 2018 Nov 9.

Abstract

A new approach to implement the restricted closed-shell Hartree-Fock equation is proposed. In the ansatz presented, the explicit transformation of integrals from the primitive to the atomic-orbital basis is omitted. Instead, the density matrix is transformed to the primitive basis, in which it is contracted with the untransformed integrals. Obtained is the two-electron part of the Fock matrix, which is transformed back to the atomic orbital basis. The remaining steps of the self-consistent field algorithm are then performed as usual. The program presented here incorporates the most important standard techniques, such as integral prescreening, convergence acceleration (via the direct inversion of the iterative subspace ansatz), and the differential density scheme. Test calculations on standard Hartree-Fock problems were compared to the commercially available MOLPRO and TURBOMOLE program packages. Except in a few special cases, the performance of the program presented here is superior, in comparison to those two programs. Accelerations by up to a factor of 5 were found, with respect to MOLPRO calculations, and up to 3 for TURBOMOLE (in the latter case, up to 55 for generalized contracted basis sets). The program structure is independent of the type of radial contraction; however, the best results are obtained for generalized radial contraction basis sets of low contraction. The program is written in C++ and utilizes code generation engines to automatically generate the routines for the integration and density contraction. Streaming SIMD extensions are used explicitly.

摘要

提出了一种实现受限闭壳层Hartree-Fock方程的新方法。在所提出的假设中,省略了积分从原始基到原子轨道基的显式变换。取而代之的是,将密度矩阵变换到原始基,在该基中它与未变换的积分进行缩并。得到Fock矩阵的双电子部分,然后将其变换回原子轨道基。然后像往常一样执行自洽场算法的其余步骤。这里展示的程序纳入了最重要的标准技术,如积分预筛选、收敛加速(通过迭代子空间假设的直接反演)和微分密度方案。对标准Hartree-Fock问题的测试计算与市售的MOLPRO和TURBOMOLE程序包进行了比较。除了少数特殊情况外,与这两个程序相比,这里展示的程序性能更优。相对于MOLPRO计算,加速因子高达5,对于TURBOMOLE则高达3(在后一种情况下,对于广义收缩基组高达55)。程序结构与径向收缩类型无关;然而,对于低收缩的广义径向收缩基组能获得最佳结果。该程序用C++编写,并利用代码生成引擎自动生成积分和密度缩并的例程。显式使用了流式SIMD扩展。

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