Diatomic molecule as a testbed for combining DMFT with electronic structure methods such as $GW$ and DFT
Abstract
We implemented combination of DMFT and in its fully self-consistent way, one shot approximation, and quasiparticle self-consistent scheme, and studied how well these combined methods perform on H molecule as compared to more established methods such as LDA+DMFT. We found that most flavors of +DMFT break down in strongly correlated regime due to causality violation. Among +DMFT methods, only the self-consistent quasiparticle +DMFT with static double-counting, and a new method with causal double-counting, correctly recover the atomic limit at large H-atom separation. While some flavors of +DMFT improve the single-electron spectra as compared to LDA+DMFT, the total energy is best predicted by LDA+DMFT, for which the exact double-counting is known, and is static.
Keywords
Cite
@article{arxiv.1611.07090,
title = {Diatomic molecule as a testbed for combining DMFT with electronic structure methods such as $GW$ and DFT},
author = {Juho Lee and Kristjan Haule},
journal= {arXiv preprint arXiv:1611.07090},
year = {2017}
}
Comments
13pages, 9 figures