DOE OSTI · 2440824
Charge self-consistent density functional theory plus ghost rotationally invariant slave-boson theory for correlated materials
Abstract
We present a charge self-consistent density functional theory combined with the ghost rotationally invariant slave-boson (DFT+gRISB) formalism for studying correlated materials. Here, this method is applied to SrVO 3 and NiO, representing prototypical correlated metals and charge-transfer insulators. For SrVO 3 , we demonstrate that DFT+gRISB yields an accurate equilibrium volume and effective mass close to experimentally observed values. Regarding NiO, DFT+gRISB enables the simultaneous description of charge-transfer and Mott-Hubbard bands, significantly enhancing the accuracy of the original DFT+RISB approach. Furthermore, the calculated equilibrium volume and spectral function reasonably agree with experimental observations.
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Lee, Tsung-Han, Melnick, Corey, Adler, Ran, Sun, Xue, Yao, Yongxin, Lanatà, Nicola, Kotliar, Gabriel. 2024-09-13. Charge self-consistent density functional theory plus ghost rotationally invariant slave-boson theory for correlated materials. https://doi.org/10.1103/physrevb.110.115126
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