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Correlated electronic structure of superconducting quintuple-layer nickelate

ORAL

Abstract

We present a comparative density functional theory plus dynamical mean-field theory (DFT+DMFT) study of the two known superconducting members of the rare-earth layered nickelate family: hole-doped RNiO2 (n=∞) and R6Ni5O12 (n=5). At the same nominal carrier concentration, these two materials exhibit nearly identical electronic structures and many-body correlations effects: mass enhancements, self-energies, and occupations. However, the fermiology of the quintuple-layer nickelate is more two-dimensional-like than its infinite-layer counterpart making this new superconducting quintuple-layer nickelate already more cuprate-like without the the need of chemical doping.

Presenters

  • Harrison LaBollita

    Arizona State University

Authors

  • Harrison LaBollita

    Arizona State University

  • Antia S Botana

    Arizona State University