English

N-Representability Violations in Truncated Equation-of-Motion Coupled-Cluster Methods

Chemical Physics 2023-07-14 v3

Abstract

One-electron reduced density matrices (1RDMs) from equation-of-motion (EOM) coupled-cluster with single and double excitations (CCSD) calculations are analyzed to assess their N-representability ({\em i.e.}, whether they are derivable from an physical N-electron state). We identify EOM-CCSD stationary states whose 1RDMs violate either ensemble-state N-representability conditions or pure-state conditions known as generalized Pauli constraints (GPCs). As such, these 1RDMs do not correspond to any physical N-electron state. Unphysical states are also encountered in the course of time-dependent EOM-CC simulations; when an external field drives transitions between a pair of stationary states with pure-state N-representable 1RDMs, the 1RDM of the time-dependent state can violate ensemble-state conditions. These observations point to potential challenges in interpreting the results of time-dependent EOM-CCSD simulations.

Cite

@article{arxiv.2305.06457,
  title  = {N-Representability Violations in Truncated Equation-of-Motion Coupled-Cluster Methods},
  author = {Stephen H. Yuwono and A. Eugene DePrince},
  journal= {arXiv preprint arXiv:2305.06457},
  year   = {2023}
}
R2 v1 2026-06-28T10:31:32.099Z