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arxiv: 1611.08692 · v1 · pith:YXPNMTJXnew · submitted 2016-11-26 · ⚛️ physics.chem-ph · cond-mat.mtrl-sci

A well-scaling natural orbital theory

classification ⚛️ physics.chem-ph cond-mat.mtrl-sci
keywords calculationsapproximationsconfigurationcurrentdensityinteractionmatrixnatural
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We introduce an energy functional for ground-state electronic structure calculations. Its variables are the natural spin-orbitals of singlet many-body wave functions and their joint occupation probabilities deriving from controlled approximations to the two-particle density matrix that yield algebraic scaling in general, and Hartree-Fock scaling in its seniority-zero version. Results from the latter version for small molecular systems are compared with those of highly accurate quantum-chemical computations. The energies lie above full configuration interaction calculations, close to doubly occupied configuration interaction calculations. Their accuracy is considerably greater than that obtained from current density-functional theory approximations and from current functionals of the one-particle density matrix.

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