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Application of renormalized coupled-cluster methods to potential function of water

机译:重归一化聚类方法在水势函数中的应用

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摘要

Abstract The goal of this paper is to examine the performance of the conventional and renormalized single-reference coupled-cluster (CC) methods in calculations of the potential energy surface of the water molecule. A comparison with the results of the internally contracted multi-reference configuration interaction calculations including the quasi-degenerate Davidson correction (MRCI(Q)) and the spectroscopically accurate potential energy surface of water resulting from the use of the energy switching (ES) approach indicates that the relatively inexpensive completely renormalized (CR) CC methods with singles (S), doubles (D), and a non-iterative treatment of triples (T) or triples and quadruples (TQ), such as CR-CCSD(T), CR-CCSD(TQ), and the recently developed rigorously size extensive extension of CR-CCSD(T), termed CR-CC(2,3), provide substantial improvements in the results of conventional CCSD(T) and CCSD(TQ) calculations at larger internuclear separations. It is shown that the CR-CC(2,3) results corrected for the effect of quadruply excited clusters through the CR-CC(2,3)+Q approach can compete with the highly accurate MRCI(Q) data. The excellent agreement between the CR-CC(2,3)+Q and MRCI(Q) results suggests ways of improving the global potential energy surface of water resulting from the use of the ES approach in the regions of intermediate bond stretches and intermediate energies connecting the region of the global minimum with the asymptotic regions.
机译:摘要本文的目的是检验传统的和重新规范化的单参考耦合簇(CC)方法在计算水分子势能面时的性能。与内部收缩的多参考配置相互作用计算结果的比较,包括准简并的戴维森校正(MRCI(Q))和使用能量转换(ES)方法产生的光谱精确的水势能面相对便宜的完全重归一化(CR)CC方法,包括单打(S),双打(D)和三重(T)或三重和四重(TQ)的非迭代处理,例如CR-CCSD(T), CR-CCSD(TQ),以及最近开发的CR-CCSD(T)的尺寸严格扩展,称为CR-CC(2,3),对常规CCSD(T)和CCSD(TQ)的结果进行了重大改进。在较大的核间距下进行计算。结果表明,通过CR-CC(2,3)+ Q方法校正了四重激发簇效应的CR-CC(2,3)结果可以与高精度MRCI(Q)数据竞争。 CR-CC(2,3)+ Q与MRCI(Q)结果之间的极好的一致性表明,通过在中间键伸和中间能量区域中使用ES方法,可以改善水的整体势能面将全局最小值的区域与渐近区域连接起来。

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