Embedding via the Exact Factorization Approach

ORAL

Abstract

We present a quantum electronic embedding method derived from the exact factorization approach to calculate static properties of a many-electron system. The method is exact in principle but the practical power lies in utilizing input from a low-level calculation on the entire system in a high-level method computed on a small fragment, as in other embedding methods. Here, the exact factorization approach defines an embedding Hamiltonian on the fragment. Various Hubbard models demonstrate that remarkably accurate ground-state energies are obtained over the full range of weak to strongly correlated systems.

*Financial support from the U.S. National Science Foundation CHE-1940333 and the Department of Energy Office of Basic Energy Sciences, Division of Chemical Sciences, Geosciences and Biosciences under Award DE-SC0020044 are gratefully acknowledged.

Presenters

  • Lionel Lacombe

    • Rutgers University, Newark
    • Theory, Rutgers University, Newark

Authors

  • Lionel Lacombe

    • Rutgers University, Newark
    • Theory, Rutgers University, Newark
  • Neepa Maitra

    • Rutgers University, Newark
    • Theory, Rutgers University, Newark