English

Concise configuration interaction expansions for three fermions in six orbitals

Quantum Physics 2016-02-02 v1

Abstract

The Hilbert space for three fermions in six orbitals, lately dubbed the "Borland-Dennis setting," is a proving ground for insights into electronic structure. Borland and Dennis discovered that, when referred to coordinate systems defined in terms of its natural orbitals, a wave function in the Borland-Dennis setting has the same structure as a 3-qubit state. By dint of the Borland-Dennis Theorem, canonical forms for 3-qubit states have analogs in the Borland-Dennis setting. One of these canonical forms is based upon "max-overlap Slater determinant approximations." Any max-overlap Slater determinant approximation of a given wave function is the leading term in a 5-term configuration interaction (CI) expansion of that wave function. Our main result is that "max-overlap CIS approximations" also lead to 5-term CI expansions, distinct from those based on max-overlap Slater determinant approximations, though of the same symmetric shape. We also prove the analog of this result for 3-qubit setting.

Cite

@article{arxiv.1602.00578,
  title  = {Concise configuration interaction expansions for three fermions in six orbitals},
  author = {Alex D. Gottlieb and Norbert J. Mauser and J. M. Zhang},
  journal= {arXiv preprint arXiv:1602.00578},
  year   = {2016}
}
R2 v1 2026-06-22T12:41:03.870Z