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February 8, 2026Journal of Chemical Theory and Computation1 citations

Seniority-Zero Canonical Transformation Theory: Error Reduction via Late Truncation

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DCDaniel F. Calero-OsorioPAPaul W. Ayers

Key Points

  • The aim is to enhance the seniority-zero wave function by incorporating electron correlation effects through a transformation of the Hamiltonian.
  • Utilized Baker-Campbell-Hausdorff expansion to treat the transformation.
  • Evaluated the first three commutators exactly for the seniority-zero structure.
  • Applied a recursive commutator approximation for remaining contributions.
  • Used parallel computation for practical implementation in small- to medium-sized systems.
  • Achieved high accuracy with error levels around 10^-4 Hartree in numerical tests.
  • Demonstrated that the method is effective for including residual electron correlation.

Abstract

We show how to add the effects of residual electron correlation to a reference seniority-zero wave function by transforming the true electronic Hamiltonian into seniority-zero form. The transformation is treated via the Baker-Campbell-Hausdorff (BCH) expansion, and the seniority-zero structure of the reference is exploited to evaluate the first three commutators exactly; the remaining contributions are handled with a recursive commutator approximation, as is typical in canonical transformation methods. By choosing a seniority-zero reference and using parallel computation, this method is practical for small- to medium-sized systems. Numerical tests show high accuracy, with errors ∼10-4 Hartree.

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Cite This Study

Calero-Osorio et al. (2026) studied this question.

synapsesocial.com/papers/698827570fc35cd7a884600dhttps://doi.org/10.1021/acs.jctc.5c01892
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