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Correlations turn electronic structure of finite-layer nickelates upside down

Superconductivity 2022-09-08 v2 Materials Science Strongly Correlated Electrons

Abstract

Motivated by the recent discovery of superconductivity in the pentalayer nickelate Nd6_6Ni5_5O12_{12} [Nature Materials 10.1038], we calculate its electronic structure and superconducting critical temperature. We find that electronic correlations are essential for pushing Nd6_6Ni5_5O12_{12} into the superconducting doping range as they shift the electron pockets above the Fermi energy. As a consequence, Nd6_6Ni5_5O12_{12} can be described with a single dx2y2d_{x^2-y^2} orbital per Ni. Instead, for the bilayer nickelate Nd3_3Ni2_2O6_6 we find correlations to drive the system into a three-orbital regime also involving the Ni dxz,yzd_{xz,yz} states. We suggest, however, that single-orbital physics with optimal doping can be restored by substituting 60% of the trivalent Nd or La by tetravalent Zr.

Keywords

Cite

@article{arxiv.2111.12697,
  title  = {Correlations turn electronic structure of finite-layer nickelates upside down},
  author = {Paul Worm and Liang Si and Motoharu Kitatani and Ryotaro Arita and Jan M. Tomczak and Karsten Held},
  journal= {arXiv preprint arXiv:2111.12697},
  year   = {2022}
}

Comments

16 pages totally, 4 figures in main text and 9 figures in supplementary materials

R2 v1 2026-06-24T07:51:02.725Z