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Hybrid and Constrained Resolution-of-Identity Techniques for Coulomb Integrals.

Ivan DucheminJing LiXavier Blase
Published in: Journal of chemical theory and computation (2017)
The introduction of auxiliary bases to approximate molecular orbital products has paved the way to significant savings in the evaluation of four-center two-electron Coulomb integrals. We present a generalized dual space strategy that sheds a new light on variants over the standard density and Coulomb-fitting schemes, including the possibility of introducing minimization constraints. We improve in particular the charge- or multipole-preserving strategies introduced respectively by Baerends and Van Alsenoy that we compare to a simple scheme where the Coulomb metric is used for lowest angular momentum auxiliary orbitals only. We explore the merits of these approaches on the basis of extensive Hartree-Fock and MP2 calculations over a standard set of medium size molecules.
Keyphrases
  • density functional theory
  • single molecule
  • molecular dynamics
  • molecular dynamics simulations
  • solar cells
  • electron transfer