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

Теория функционала плотности отклоняется от пути к точному функционалу
John P. Perdew, Michael G. Medvedev, Konstantin А. Lyssenko, Иван С. Бушмаринов, Jianwei Sun
2017-01-05

DFT functionals historical trenddensity functional theoryempirical fitting in DFTenergy-minimizing electron densityexact functional
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.
1
Analysis of energy-minimizing electron densities from 128 DFT functionals shows densities improved toward the exact ones until the early 2000s.
2
DFT theorems assert ground-state energy is fully determined by electron density via an exact functional that minimizes at the exact density.
3
Historically, DFT development focused on improving energies, assuming better energies imply better approximations to the exact functional.
4
Since the early 2000s, many unconstrained, empirically fitted functionals reversed this trend, producing densities that moved away from the exact densities.
5
The shift toward empirical flexibility in functional design sacrificed physical rigor and degraded density accuracy despite energy-focused improvements.

Energy-minimizing electron densities for atomic species as produced by 128 historical and modern DFT functionals

How closely those computed energy-minimizing electron densities approximate the exact electron densities over time and how methodological shifts (unconstrained/empirically fitted functionals) affected that closeness

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2017-01-05
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John P. Perdew
Michael G. Medvedev
Konstantin А. Lyssenko
Иван С. Бушмаринов
Jianwei Sun
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