List of Forte2 capabilities#

Forte2 is still under active development, with a focus on multi-reference and relativistic methods. Here is a (non-exhaustive) list of the current capabilities of Forte2:

  • Support for density-fitted or Cholesky-decomposed integrals (no support for conventional, 4-index integrals)

  • Support for arbitrary model Hamiltonians

  • Support for utilizing molecular symmetry (largest Abelian subgroup) at the post-Hartree-Fock level

  • Scalar and vector relativistic Hamiltonians

    • Spin-free 1-electron exact two-component (sf-1eX2C) [1]

    • Spin-orbit 1-electron exact two-component (so-1eX2C) [1]

    • Various empirical scaling schemes to approximate two-electron spin-orbit couplings (“Boettger factors”) [2]

  • Flavors of Hartree-Fock theory

    • Restricted Hartree-Fock (RHF)

    • Restricted Open-Shell Hartree-Fock (ROHF)

    • Unrestricted Hartree-Fock (UHF)

    • Constrained unrestricted Hartree-Fock (CUHF)

    • Generalized Hartree-Fock (GHF)

  • A flexible configuration interaction (CI) module

    • Spin-adapted CI (CSF basis) for non-relativistic Hamiltonians

    • Support for generalized active spaces (GAS) / occupation-restricted multiple active spaces (ORMAS)

    • Two-component CI for relativistic Hamiltonians

  • Multi-configuration self-consistent field (MCSCF) methods

    • Support for CAS-SCF and GAS-SCF/ORMAS-SCF, with state-averaging

    • Two-component CAS/GAS/ORMAS-SCF

    • Atomic valence active space (AVAS) active space selection (support for both one- and two-component Hartree-Fock) [3]

  • Various orbital manipulation routines

    • Zeroth order active space embedding theory (ASET(0)) [4]

    • Intrinsic atomic orbitals (IAO) [5]

    • Intrinsic bond orbitals (IBO) [5]

    • A cube file generator for visualizing molecular orbitals

References#