Density functional theory is straying from the path toward the exact functional.

نویسندگان

  • Michael G Medvedev
  • Ivan S Bushmarinov
  • Jianwei Sun
  • John P Perdew
  • Konstantin A Lyssenko
چکیده

The theorems at the core of density functional theory (DFT) state that the energy of a many-electron system in its ground state is fully defined by its electron density distribution. This connection is made via the exact functional for the energy, which minimizes at the exact density. For years, DFT development focused on energies, implicitly assuming that functionals producing better energies become better approximations of the exact functional. We examined the other side of the coin: the energy-minimizing electron densities for atomic species, as produced by 128 historical and modern DFT functionals. We found that these densities became closer to the exact ones, reflecting theoretical advances, until the early 2000s, when this trend was reversed by unconstrained functionals sacrificing physical rigor for the flexibility of empirical fitting.

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Comment on "Density functional theory is straying from the path toward the exact functional".

Medvedev et al (Reports, 6 January 2017, p. 49) argue that recent density functionals stray from the path toward exactness. This conclusion rests on very compact 1s2 and 1s22s2 systems favored by the Hartree-Fock picture. Comparison to actual energies for the same systems indicates that the "straying" is not chemically relevant and is at best specific to the studied dense systems.

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عنوان ژورنال:
  • Science

دوره 355 6320  شماره 

صفحات  -

تاریخ انتشار 2017