Application of renormalized coupled-cluster methods to potential function of water |
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Authors: | Piotr Piecuch Marta Włoch António J. C. Varandas |
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Affiliation: | (1) Department of Chemistry, Michigan State University, East Lansing, MI 48824, USA;(2) Department of Physics and Astronomy, Michigan State University, East Lansing, MI 48824, USA;(3) Departamento de Química, Universidade de Coimbra, 3004-535 Coimbra, Portugal |
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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. Contribution to the Mark S. Gordon 65th Birthday Festschrift Issue. |
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Keywords: | Coupled-cluster theory Renormalized coupled-cluster methods Potential energy surfaces Potential function of water |
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