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Electronic structure and correlations in planar trilayer nickelate Pr <sub>4</sub> Ni <sub>3</sub> O <sub>8</sub>

Haoxiang Li, Peipei Hao, Junjie Zhang, Kyle Gordon, A. Garrison Linn, Xinglong Chen, Hong Zheng, Xiaoqing Zhou, J. F. Mitchell, D. S. Dessau

2023Science Advances21 citationsDOIOpen Access PDF

Abstract

The discovery of superconductivity in planar nickelates raises the question of how the electronic structure and correlations of Ni 1+ compounds compare to those of the Cu 2+ cuprate superconductors. Here, we present an angle-resolved photoemission spectroscopy (ARPES) study of the trilayer nickelate Pr 4 Ni 3 O 8 , revealing a Fermi surface resembling that of the hole-doped cuprates but with critical differences. Specifically, the main portions of the Fermi surface are extremely similar to that of the bilayer cuprates, with an additional piece that can accommodate additional hole doping. We find that the electronic correlations are about twice as strong in the nickelates and are almost k -independent, indicating that they originate from a local effect, likely the Mott interaction, whereas cuprate interactions are somewhat less local. Nevertheless, the nickelates still demonstrate the strange-metal behavior in the electron scattering rates. Understanding the similarities and differences between these two families of strongly correlated superconductors is an important challenge.

Topics & Concepts

CuprateAngle-resolved photoemission spectroscopySuperconductivityCondensed matter physicsFermi surfacePhotoemission spectroscopyElectronic structureDopingScatteringMaterials sciencePlanarPhysicsFermi levelElectronX-ray photoelectron spectroscopyNuclear magnetic resonanceQuantum mechanicsComputer graphics (images)Computer scienceMagnetic and transport properties of perovskites and related materialsPhysics of Superconductivity and MagnetismIron-based superconductors research
Electronic structure and correlations in planar trilayer nickelate Pr <sub>4</sub> Ni <sub>3</sub> O <sub>8</sub> | Litcius