English

A detailed electronic structure study of Vanadium metal by using different beyond-DFT methods

Strongly Correlated Electrons 2020-01-22 v2

Abstract

We report a detailed electronic structure calculation for Vanadium (V) using DFT, DFT+UU, G0W0G_0W_0, GW0GW_0 and DFT+DMFT methods. The calculated values of WW, UU and JJ by cRPA method are \sim1.1, \sim3.4 and \sim0.52 eV, respectively. The comparison between calculated spectra (CS) and experimental spectra (ES) suggests that WW (UU) is more accurate for DFT+UU (DFT+DMFT) method. The CS, obtained by these methods, give fairly good agreement with ES for peaks' positions except GW0GW_0. The shallowness of the dips lying \sim -1.5 eV and \sim1.0 eV in ES are properly explained by DFT+DMFT method only, due to the presence of incoherent t2gt_{2g} states. This work suggests that for the proper explanation of ES, sophisticated many-body theory is needed even for the simple metal.

Keywords

Cite

@article{arxiv.1909.12267,
  title  = {A detailed electronic structure study of Vanadium metal by using different beyond-DFT methods},
  author = {Antik Sihi and Sudhir K. Pandey},
  journal= {arXiv preprint arXiv:1909.12267},
  year   = {2020}
}
R2 v1 2026-06-23T11:27:16.166Z