Department of Chemistry, Virginia Tech, Blacksburg, Virginia 24061, USA.
Max Planck Institute for Chemical Energy Conversion, Stiftstr. 34-36, 45470 Mülheim an der Ruhr, Germany.
J Chem Phys. 2017 May 7;146(17):174108. doi: 10.1063/1.4979993.
In this work, we present a linear scaling formulation of the coupled-cluster singles and doubles with perturbative inclusion of triples (CCSD(T)) and explicitly correlated geminals. The linear scaling implementation of all post-mean-field steps utilizes the SparseMaps formalism [P. Pinski et al., J. Chem. Phys. 143, 034108 (2015)]. Even for conservative truncation levels, the method rapidly reaches near-linear complexity in realistic basis sets, e.g., an effective scaling exponent of 1.49 was obtained for n-alkanes with up to 200 carbon atoms in a def2-TZVP basis set. The robustness of the method is benchmarked against the massively parallel implementation of the conventional explicitly correlated coupled-cluster for a 20-water cluster; the total dissociation energy of the cluster (∼186 kcal/mol) is affected by the reduced scaling approximations by only ∼0.4 kcal/mol. The reduced scaling explicitly correlated CCSD(T) method is used to examine the binding energies of several systems in the L7 benchmark data set of noncovalent interactions.
在这项工作中,我们提出了耦合簇单双激发与微扰三激发项(CCSD(T))和显式关联双子的线性标度公式。所有后平均场步骤的线性标度实现都利用了稀疏映射形式主义[P. Pinski 等人,J. Chem. Phys. 143, 034108 (2015)]。即使对于保守的截断水平,该方法在实际基组中也能迅速达到近线性复杂度,例如,在 def2-TZVP 基组中,对于多达 200 个碳原子的正烷烃,得到了 1.49 的有效标度指数。该方法的稳健性通过对传统显式关联耦合簇的大规模并行实现进行基准测试得到验证,对于 20 个水分子的簇,簇的总离解能(约 186 kcal/mol)仅受约 0.4 kcal/mol 的缩减标度近似影响。所提出的缩减标度显式关联 CCSD(T)方法用于检验 L7 非共价相互作用基准数据集内几个体系的结合能。