English

Orbital-selective Peierls phase in the metallic dimerized chain MoOCl$_2$

Strongly Correlated Electrons 2021-08-11 v2

Abstract

Using {\it ab initio} density functional theory, here we systematically study the monolayer MoOCl2_2 with a 4d24d^2 electronic configuration. Our main results is that an orbital-selective Peierls phase (OSPP) develops in MoOCl2_2, resulting in the dimerization of the Mo chain along the bb-axis. Specifically, the Mo-dxyd_{xy} orbitals form robust molecular-orbital states inducing localized dxyd_{xy} singlet dimers, while the Mo-dxz/yzd_{xz/yz} orbitals remain delocalized and itinerant. Our study shows that MoOCl2_2 is globally metallic, with the Mo-dxyd_{xy} orbital bonding-antibonding splittings opening a gap and the Mo-dxz/yzd_{xz/yz} orbitals contributing to the metallic conductivity. Overall, the results resemble the recently much discussed orbital-selective Mott phase but with the localized band induced by a Peierls distortion instead of Hubbard interactions. Finally, we also qualitatively discuss the possibility of OSPP in the 3d23d^2 configuration, as in CrOCl2_2.

Cite

@article{arxiv.2105.10004,
  title  = {Orbital-selective Peierls phase in the metallic dimerized chain MoOCl$_2$},
  author = {Yang Zhang and Ling-Fang Lin and Adriana Moreo and Elbio Dagotto},
  journal= {arXiv preprint arXiv:2105.10004},
  year   = {2021}
}

Comments

7 pages, 5 figures

R2 v1 2026-06-24T02:19:10.980Z