Kinetic energy-free Hartree–Fock equations: an integral formulation
Permanent lenke
https://hdl.handle.net/10037/27428Dato
2022-07-18Type
Journal articleTidsskriftartikkel
Peer reviewed
Forfatter
Jensen, Stig Rune; Durdek, Antoine Pacifique Romain; Bjørgve, Magnar; Wind, Peter; Flå, Tor; Frediani, LucaSammendrag
We have implemented a self-consistent feld solver for Hartree–Fock calculations,
by making use of Multiwavelets and Multiresolution Analysis. We show how such a
solver is inherently a preconditioned steepest descent method and therefore a good
starting point for rapid convergence. A distinctive feature of our implementation is
the absence of any reference to the kinetic energy operator. This is desirable when
Multiwavelets are employed, because diferential operators such as the Laplacian in
the kinetic energy are challenging to represent correctly. The theoretical framework
is described in detail and the implemented algorithm is both presented in the paper
and made available as a Python notebook. Two simple examples are presented, highlighting the main features of our implementation: arbitrary predefned precision,
rapid and robust convergence, absence of the kinetic energy operator.
Er en del av
Bjørgve, M. (2024). Unleashing the VAMPyR. A Python Journey into the Realm of Multiwavelets and Quantum Chemisty. (Doctoral thesis). https://hdl.handle.net/10037/33245.Forlag
SpringerSitering
Jensen, Durdek, Bjørgve, Wind, Flå, Frediani. Kinetic energy-free Hartree–Fock equations: an integral formulation. Journal of Mathematical Chemistry. 2022Metadata
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