Seniority-Zero Canonical Transformation Theory: Reducing Truncation Error with Late Truncation
Chemical Physics
2026-04-14 v3
Abstract
We show how to add the effects of residual electron correlation to a reference seniority-zero wavefunction by making a unitary transformation of 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 Hartree.
Keywords
Cite
@article{arxiv.2511.07580,
title = {Seniority-Zero Canonical Transformation Theory: Reducing Truncation Error with Late Truncation},
author = {Daniel F. Calero-Osorio and Paul W. Ayers},
journal= {arXiv preprint arXiv:2511.07580},
year = {2026}
}
Comments
37 pages, 6 figures