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Method of moments of coupled-cluster equations: a new formalism for designing accurate electronic structure methods for ground and excited states

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Abstract.

The method of moments of coupled-cluster equations (MMCC), which provides a systematic way of improving the results of the standard coupled-cluster (CC) and equation-of-motion CC (EOMCC) calculations for the ground- and excited-state energies of atomic and molecular systems, is described. The MMCC theory and its generalized MMCC (GMMCC) extension that enables one to use the cluster operators resulting from the standard as well as nonstandard CC calculations, including those obtained with the extended CC (ECC) approaches, are based on rigorous mathematical relationships that define the many-body structure of the differences between the full configuration interaction (CI) and CC or EOMCC energies. These relationships can be used to design the noniterative corrections to the CC/EOMCC energies that work for chemical bond breaking and potential energy surfaces of excited electronic states, including excited states dominated by double excitations, where the standard single-reference CC/EOMCC methods fail. Several MMCC and GMMCC approximations are discussed, including the renormalized and completely renormalized CC/EOMCC methods for closed- and open-shell states, the quadratic MMCC approaches, the CI-corrected MMCC methods, and the GMMCC approaches for multiple bond breaking based on the ECC cluster amplitudes.

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Acknowledgments.

P.P. would like to express his most sincere thanks to Donald G. Truhlar and Christopher J. Cramer for inviting him to write this feature article. We would like to thank Martin Schütz for providing us with the CASPT2 and MRCI(Q) data for ethane and methyl fluoride that were used to prepare Figs. 1b and 1c. We would also like to thank Michael W. Schmidt and Mark S. Gordon for helping us to interface our CR-CC and CR-EOMCC codes with gamess and for several useful discussions. This work was supported by the Department of Energy, Office of Basic Energy Sciences, SciDAC Computational Chemistry Program (grant no. DE-FG02-01ER15228) and by the Alfred P. Sloan Foundation (awards provided to P.P.). Additional support by the National Science Foundation under grant no. CHE-0309517 (P.P) is gratefully appreciated.

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Correspondence to P. Piecuch.

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Piecuch, P., Kowalski, K., Pimienta, I. et al. Method of moments of coupled-cluster equations: a new formalism for designing accurate electronic structure methods for ground and excited states. Theor Chem Acc 112, 349–393 (2004). https://doi.org/10.1007/s00214-004-0567-2

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  • DOI: https://doi.org/10.1007/s00214-004-0567-2

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