4.7 Article

Properties of coupled-cluster equations originating in excitation sub-algebras

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 148, Issue 9, Pages -

Publisher

AIP Publishing
DOI: 10.1063/1.5010693

Keywords

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Funding

  1. U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences, Division of Chemical Sciences, Geosciences and Biosciences
  2. Office of Biological and Environmental Research in the U.S. Department of Energy
  3. U.S. Department of Energy [DE-AC06-76RLO-1830]

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In this paper, we discuss properties of single-reference coupled cluster (CC) equations associated with the existence of sub-algebras of excitations that allow one to represent CC equations in a hybrid fashion where the cluster amplitudes associated with these sub-algebras can be obtained by solving the corresponding eigenvalue problem. For closed-shell formulations analyzed in this paper, the hybrid representation of CC equations provides a natural way for extending active-space and seniority number concepts to provide an accurate description of electron correlation effects. Moreover, a new representation can be utilized to re-define iterative algorithms used to solve CC equations, especially for tough cases defined by the presence of strong static and dynamical correlation effects. We will also explore invariance properties associated with excitation sub-algebras to define a new class of CC approximations referred to in this paper as the sub-algebra-flow-based CC methods. We illustrate the performance of these methods on the example of ground-and excited-state calculations for commonly used small benchmark systems. Published by AIP Publishing.

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