Skip to content

Opening book details…

Can I read Density Functional Versus Spin-density Functional and the Choice of Correlated Subspace in Multi-variable Effective Action Theories of Electronic Structure on EtoBox?

Density Functional Versus Spin-density Functional and the Choice of Correlated Subspace in Multi-variable Effective Action Theories of Electronic Structure by Park, Hyowon; Millis, Andrew J.; Marianetti, Chris A. is a scholarly article available to read on EtoBox.

What is Density Functional Versus Spin-density Functional and the Choice of Correlated Subspace in Multi-variable Effective Action Theories of Electronic Structure about?

Modern extensions of density functional theory such as the density functional theory plus U and the density functional theory plus dynamical mean-field theory require choices, including selection of variable (charge vs spin density) for the density functional and specification of the correlated subspace. This paper examines these issues in the context of the "plus U" extensions of density functional theory, in which additional correlations on specified correlated orbitals are treated using a Hartree-Fock approximation. Differences between using charge-only or spin-density-dependent exchange-correlation functionals and between Wannier and projector-based definitions of the correlated orbitals are considered on the formal level and in the context of the structural energetics of the rare earth nickelates. It is demonstrated that theories based on spin-dependent exchange-correlation functionals can lead to large and in some cases unphysical effective on-site exchange couplings. Wannier and projector-based definitions of the correlated orbitals lead to similar behavior near ambient pressure, but substantial differences are observed at large pressures. Implications for other beyond densi

Author
Park, Hyowon; Millis, Andrew J.; Marianetti, Chris A.
Published
2015
Language
EN

More by Park, Hyowon; Millis, Andrew J.; Marianetti, Chris A.

Browse all works by Park, Hyowon; Millis, Andrew J.; Marianetti, Chris A.