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First-principles calculations of the electronic structure and spectra of strongly correlated systems: the<b>LDA</b>+<i>U</i>method

Journal of Physics Condensed Matter · 1997 · Vol. 9(4) · pp. 767–808
В. И. АнисимовF. AryasetiawanA. I. Lichtenstein

Abstract

A generalization of the local density approximation (LDA) method for systems with strong Coulomb correlations is described which gives a correct description of the Mott insulators. The LDA+U method takes into account orbital dependence of the Coulomb and exchange interactions which is absent in the LDA. The scheme can be regarded as a `first-principles' method because there are no adjustable parameters. When applied to the transition metal and rare-earth metal compounds, the LDA+U method gives a qualitative improvement compared with the LDA not only for excited-state properties such as energy gaps but also for ground-state properties such as magnetic moments and interatomic exchange parameters. The orbital-dependent rotationally invariant LDA+U potential gives a correct orbital polarization and a corresponding Jahn - Teller distortion as well as polaron formation.

Magnetic and transport properties of perovskites and related materialsRare-earth and actinide compoundsPhysics of Superconductivity and MagnetismCoulombExcited stateLocal-density approximationJahn–Teller effectPhysicsHybrid functionalPolarization (electrochemistry)Ground stateAtomic physicsElectronic structure
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Physical review. B, Condensed matter · 1993 · 2,247 citations
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