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基于广义价键参考态的强关联体系块相关耦合簇理论的高效实现

Efficient Implementation of Block-Correlated Coupled Cluster Theory Based on the Generalized Valence Bond Reference for Strongly Correlated Systems.

作者信息

Zou Jingxiang, Wang Qingchun, Ren Xiaochuan, Wang Yuqi, Zhang Haodong, Li Shuhua

机构信息

Institute of Theoretical and Computational Chemistry, Key Laboratory of Mesoscopic Chemistry of Ministry of Education, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, People's Republic of China.

Key Laboratory of Quantum Information, Chinese Academy of Sciences, School of Physics, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.

出版信息

J Chem Theory Comput. 2022 Sep 13;18(9):5276-5285. doi: 10.1021/acs.jctc.2c00445. Epub 2022 Aug 3.

Abstract

An optimized implementation of block-correlated coupled cluster theory based on the generalized valence bond wave function (GVB-BCCC) for the singlet ground state of strongly correlated systems is presented. The GVB-BCCC method with two-pair correlation (GVB-BCCC2b) or up to three-pair correlation (GVB-BCCC3b) will be the focus of this work. Three major techniques have been adopted to dramatically accelerate GVB-BCCC2b and GVB-BCCC3b calculations. First, the GVB-BCCC2b and GVB-BCCC3b codes are noticeably optimized by removing redundant calculations. Second, independent amplitudes are identified by constraining excited configurations to be pure singlet states and only independent amplitudes need to be solved. Third, an incremental updating scheme for the amplitudes in solving the GVB-BCCC equations is adopted. With these techniques, accurate GVB-BCCC3b calculations are now accessible for systems with relatively large active spaces (50 electrons in 50 orbitals) and GVB-BCCC2b calculations are affordable for systems with much larger active spaces. We have applied GVB-BCCC methods to investigate three typical kinds of systems: polyacenes, pentaprismane, and [CuO] isomers. For polyacenes, we demonstrate that GVB-BCCC3b can capture more than 94% of the total correlation energy even for 12-acene with 50 π electrons. For the potential energy curve of simultaneously stretching 15 C-C bonds in pentaprismane, our calculations show that the GVB-BCCC3b results are quite close to the results from the density matrix renormalization group (DMRG) over the whole range. For two dinuclear copper oxide isomers, their relative energy predicted by GVB-BCCC3b is also in good accord with the DMRG result. All calculations show that the inclusion of three-pair correlation in GVB-BCCC is critical for accurate descriptions of strongly correlated systems.

摘要

本文提出了一种基于广义价键波函数(GVB-BCCC)的块相关耦合簇理论的优化实现方法,用于强关联体系的单重基态。具有两对关联(GVB-BCCC2b)或至多三对关联(GVB-BCCC3b)的GVB-BCCC方法将是本工作的重点。采用了三种主要技术来显著加速GVB-BCCC2b和GVB-BCCC3b的计算。首先,通过去除冗余计算对GVB-BCCC2b和GVB-BCCC3b代码进行了显著优化。其次,通过将激发组态约束为纯单重态来识别独立振幅,只需求解独立振幅。第三,在求解GVB-BCCC方程时采用了振幅的增量更新方案。借助这些技术,现在对于具有相对较大活性空间(50个轨道中的50个电子)的体系可以进行精确的GVB-BCCC3b计算,而对于具有更大活性空间的体系也可以进行GVB-BCCC2b计算。我们已将GVB-BCCC方法应用于研究三种典型体系:多并苯、五环戊烷和[CuO]异构体。对于多并苯,我们证明即使对于具有50个π电子的12-并苯,GVB-BCCC3b也能捕获超过总相关能的94%。对于五环戊烷中同时拉伸15个C-C键的势能曲线,我们的计算表明在整个范围内GVB-BCCC3b的结果与密度矩阵重整化群(DMRG)的结果非常接近。对于两种双核氧化铜异构体,GVB-BCCC3b预测的它们的相对能量也与DMRG结果高度一致。所有计算表明,在GVB-BCCC中包含三对关联对于精确描述强关联体系至关重要。

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