English

Coupling of electronic and structural degrees of freedom in vanadate superlattices

Strongly Correlated Electrons 2022-04-27 v1 Materials Science

Abstract

Heterostructuring provides different ways to manipulate the orbital degrees of freedom and to tailor orbital occupations in transition metal oxides. However, the reliable prediction of these modifications remains a challenge. Here, we present a detailed investigation of the relationship between the crystal and electronic structure in YVO3_3-LaAlO3_3 superlattices by combining ab initio theory, scanning transmission electron microscopy, and x-ray diffraction. Density functional theory simulations including an on-site Coulomb repulsion term, accurately predict the crystal structure and in conjunction with x-ray diffraction, provide an explanation for the lifting of degeneracy of the vanadium dxzd_{xz} and dyzd_{yz} orbitals, that was recently observed in this system. In addition, we unravel the combined effects of electronic confinement and octahedral connectivity by disentangling their impact from that of epitaxial strain. Our results demonstrate that the specific orientation of the substrate and the thickness of the YVO3_3 slabs in the multilayer, can be utilized to reliably engineer orbital polarization.

Keywords

Cite

@article{arxiv.2112.05444,
  title  = {Coupling of electronic and structural degrees of freedom in vanadate superlattices},
  author = {P. Radhakrishnan and B. Geisler and K. Fürsich and D. Putzky and Y. Wang and G. Christiani and G. Logvenov and P. Wochner and P. A. van Aken and R. Pentcheva and E. Benckiser},
  journal= {arXiv preprint arXiv:2112.05444},
  year   = {2022}
}

Comments

10 pages, 6 figures