English

Full Coupled-Cluster Reduction for Accurate Description of Strong Electron Correlation

Chemical Physics 2018-09-13 v3 Strongly Correlated Electrons Computational Physics

Abstract

A full coupled-cluster expansion suitable for sparse algebraic operations is developed by expanding the commutators of the Baker-Campbell-Hausdorff series explicitly for cluster operators in binary representations. A full coupled-cluster reduction that is capable of providing very accurate solutions of the many-body Schr\"odinger equation is then initiated employing screenings to the projection manifold and commutator operations. The projection manifold is iteratively updated through the single commutators κ[H^,T^]0\left\langle \kappa \right| [\hat H,\hat T]\left| 0 \right\rangle comprised of the primary clusters T^λ\hat T_{\lambda} with substantial contribution to the connectivity. The operation of the commutators is further reduced by introducing a correction, taking into account the so-called exclusion principle violating terms, that provides fast and near-variational convergence in many cases.

Keywords

Cite

@article{arxiv.1807.05818,
  title  = {Full Coupled-Cluster Reduction for Accurate Description of Strong Electron Correlation},
  author = {Enhua Xu and Motoyuki Uejima and Seiichiro L. Ten-no},
  journal= {arXiv preprint arXiv:1807.05818},
  year   = {2018}
}

Comments

5 pages, 3 figures, and 2 tables

R2 v1 2026-06-23T03:02:34.692Z