English

Electronic structure and minimal models for flat and corrugated CuO monolayers: an ab initio study

Superconductivity 2024-11-05 v1 Strongly Correlated Electrons

Abstract

CuO\mathrm{CuO} atomic thin monolayer (mlCuO\mathrm{mlCuO}) was synthesized recently. Interest in the mlCuO\mathrm{mlCuO} is based on its close relation to CuO2\mathrm{CuO_2} layers in typical high temperature cuprate superconductors. Here, we present the calculation of the band structure, the density of states and the Fermi surface of the flat mlCuO\mathrm{mlCuO} as well as the corrugated mlCuO\mathrm{mlCuO} within the density functional theory (DFT) in the generalized gradient approximation (GGA). In the flat mlCuO\mathrm{mlCuO}, the Cu\mathrm{Cu}-3dx2y23d_{x^2-y^2} band crosses the Fermi level, while the Cu\mathrm{Cu}-3dxz,yz3d_{xz,yz} hybridized band is located just below it. The corrugation leads to a significant shift of the Cu\mathrm{Cu}-3dxz,yz3d_{xz,yz} hybridized band down in energy and a degeneracy lifting for the Cu\mathrm{Cu}-3dx2y23d_{x^2-y^2} bands. Corrugated mlCuO\mathrm{mlCuO} is more energetically favorable than the flat one. In addition, we compared the electronic structure of the considered CuO\mathrm{CuO} monolayers with bulk CuO\mathrm{CuO} systems. We also investigated the influence of a crystal lattice strain (which might occur on some interfaces) on the electronic structure of both mlCuO\mathrm{mlCuO} and determined the critical strains of topological Lifshitz transitions. Finally, we proposed a number of different minimal models for the flat and the corrugated mlCuO\mathrm{mlCuO} using projections onto different Wannier functions basis sets and obtained the corresponding Hamiltonian matrix elements in a real space.

Keywords

Cite

@article{arxiv.2411.01130,
  title  = {Electronic structure and minimal models for flat and corrugated CuO monolayers: an ab initio study},
  author = {A. A. Slobodchikov and I. A. Nekrasov and L. V. Begunovich and I. A. Makarov and M. M. Korshunov and S. G. Ovchinnikov},
  journal= {arXiv preprint arXiv:2411.01130},
  year   = {2024}
}

Comments

10 pages, published version

R2 v1 2026-06-28T19:45:17.615Z