English

Variational optimization of the 2DM: approaching three-index accuracy using extended cluster constraints

Strongly Correlated Electrons 2014-03-14 v3 Quantum Physics

Abstract

The reduced density matrix is variationally optimized for the two-dimensional Hubbard model. Exploiting all symmetries present in the system, we have been able to study 6×66\times6 lattices at various fillings and different values for the on-site repulsion, using the highly accurate but computationally expensive three-index conditions. To reduce the computational cost we study the performance of imposing the three-index constraints on local clusters of 2×22\times2 and 3×33\times3 sites. We subsequently derive new constraints which extend these cluster constraints to incorporate the open-system nature of a cluster on a larger lattice. The feasibility of implementing these new constraints is demonstrated by performing a proof-of-principle calculation on the 6×66\times6 lattice. It is shown that a large portion of the three-index result can be recovered using these extended cluster constraints, at a fraction of the computational cost.

Keywords

Cite

@article{arxiv.1307.1002,
  title  = {Variational optimization of the 2DM: approaching three-index accuracy using extended cluster constraints},
  author = {Brecht Verstichel and Ward Poelmans and Stijn De Baerdemacker and Sebastian Wouters and Dimitri Van Neck},
  journal= {arXiv preprint arXiv:1307.1002},
  year   = {2014}
}

Comments

26 pages, 10 figures, published version

R2 v1 2026-06-22T00:44:51.540Z