paper

Dichotomous electronic system in a bilayer Ni nickelate

arXiv:2606.10564

Abstract

"Infinite layer" nickelates (ILNs) NiO (=rare earth), having empty apical O sites, become superconducting upon hole doping, stimulating research into the related sequence NdNiO, formal charge state =1+, =2,3,4,...., with the =5 member being found to be superconducting. The two layer system LaNiO, with =0,,1 (=2.5,2,1.5) approaches the peak in the nickelate superconducting dome but shows no superconductivity. Newly reported LaNiOF reaches the Ni goal while, as we show, introducing a partially occupied electron band , based on an interstitial density that extends over the three open "apical" layers and leads to a single cylindrical electron Fermi surface giving self-doping. The commonly inert Ni orbitals partner with interstitial to provide an incipient non-analytic Dirac point, with the critical point being reachable by pressure or further F insertion. The electron cylinder and the conventional Ni hole carriers combine to provide a two-fluid dichotomy of hole and electron quasiparticles, affecting normal state properties that should verify the dichotomous aspect of transport.

7 pages and 4 embedded figures