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使用迭代零空间投影技术将自旋对称投影耦合簇扩展到大型模型空间。

Extending spin-symmetry projected coupled-cluster to large model spaces using an iterative null-space projection technique.

作者信息

Tsuchimochi Takashi, Ten-No Seiichiro L

机构信息

Graduate School of Science, Technology, and Innovation, Kobe University, Kobe, Hyogo, 657-0025, Japan.

出版信息

J Comput Chem. 2019 Jan 5;40(1):265-278. doi: 10.1002/jcc.25587.

Abstract

Recently, we introduced an orbital-invariant approximate coupled-cluster (CC) method in the spin-projection manifold. The multi-determinantal property of spin-projection means that the parametrization in the spin-extended CC (ECC) ansatz is nonorthogonal and overcomplete. Therefore, the linear dependencies must be removed by an orthogonalization procedure to obtain meaningful solutions. Multi-reference methods often achieve this by diagonalizing a metric of the equation system, but this is not feasible with ECC because of the enormous size of the metric, a consequence of the incomplete active space of the spin-projected Hartree-Fock reference. As a result, the applicability of ECC has been limited to small benchmark systems, for which the ansatz was shown to be superior to the configuration interaction and linearized approximations. In this article, we provide a solution to this problem that completely avoids the metric diagonalization by iteratively projecting out its null-space from the working equations. As the additional computational cost required for this iterative projection is only marginal, it greatly expands the application range of ECC. We demonstrate the potential of approximate ECC by studying the complete basis set limit of F and transition metal complexes such as NiO, Mn , and [Cu O ] , which have all been hindered by the prohibitively large metric size. We also identify the potential inadequacy of the molecular orbitals given by spin-projected Hartree-Fock in some cases, and propose possible solutions. © 2018 Wiley Periodicals, Inc.

摘要

最近,我们在自旋投影流形中引入了一种轨道不变近似耦合簇(CC)方法。自旋投影的多行列式性质意味着自旋扩展CC(ECC)假设中的参数化是非正交且超完备的。因此,必须通过正交化程序消除线性相关性以获得有意义的解。多参考方法通常通过对方程系统的度量进行对角化来实现这一点,但对于ECC来说这并不可行,因为度量的规模巨大,这是自旋投影哈特里 - 福克参考的不完全活性空间的结果。因此,ECC的适用性仅限于小型基准系统,对于这些系统,该假设已被证明优于组态相互作用和线性化近似。在本文中,我们提供了一个解决此问题的方案,即通过从工作方程中迭代地投影出其零空间来完全避免度量对角化。由于这种迭代投影所需的额外计算成本微不足道,它极大地扩展了ECC的应用范围。我们通过研究F以及诸如NiO、Mn和[CuO]等过渡金属配合物的完全基组极限来证明近似ECC的潜力,这些体系都因过大的度量规模而受到阻碍。我们还确定了在某些情况下自旋投影哈特里 - 福克给出的分子轨道可能存在的不足,并提出了可能的解决方案。© 2018威利期刊公司

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