English

Is Externally Corrected Coupled Cluster Always Better than the Underlying Truncated Configuration Interaction?

Chemical Physics 2021-08-24 v2 Nuclear Theory Computational Physics

Abstract

The short answer to the question in the title is 'no'. We identify classes of truncated configuration interaction (CI) wave functions for which the externally corrected coupled-cluster (ec-CC) approach using the three-body (T3T_{3}) and four-body (T4T_{4}) components of the cluster operator extracted from CI does not improve the results of the underlying CI calculations. Implications of our analysis, illustrated by numerical examples, for the ec-CC computations using truncated and selected CI methods are discussed. We also introduce a novel ec-CC approach using the T3T_{3} and T4T_{4} amplitudes obtained with the selected CI scheme abbreviated as CIPSI, correcting the resulting energies for the missing T3T_{3} correlations not captured by CIPSI with the help of moment expansions similar to those employed in the completely renormalized CC methods.

Cite

@article{arxiv.2102.10143,
  title  = {Is Externally Corrected Coupled Cluster Always Better than the Underlying Truncated Configuration Interaction?},
  author = {Ilias Magoulas and Karthik Gururangan and Piotr Piecuch and J. Emiliano Deustua and Jun Shen},
  journal= {arXiv preprint arXiv:2102.10143},
  year   = {2021}
}

Comments

70 pages, 4 tables, 2 charts, and 1 figure. Supporting Information as an ancillary file. This article has been accepted for publication in the Journal of Chemical Theory and Computation

R2 v1 2026-06-23T23:20:27.401Z