paper

Superconductivity from Doping Symmetric Mass Generation Insulators: Application to LaNiO under Pressure

arXiv:2308.11195 · doi:10.1038/s41535-026-00925-0

Abstract

We investigate the bilayer nickelates as a platform to realize the symmetric mass generation (SMG) insulator, a featureless Mott insulator that arises due to the Lieb-Schultz-Mattis (LSM) anomaly cancellation in bilayer spin-1/2 lattice systems. Through a single-orbital bilayer square lattice model involving intralayer hopping and interlayer superexchange interaction , we demonstrate the emergence of high-temperature superconductivity (SC) upon doping the SMG insulator. The SC phase features -wave interlayer spin-singlet pairing and exhibits a crossover between the BCS and BEC limits by tuning the ratio. We estimate the SC transition temperature from both the weak and strong coupling limits at the mean-field level. Our findings offer insights into the experimentally observed decrease in with pressure and the strange metal behavior above . Additionally, we propose that both Ni and orbitals can exhibit superconductivity in LaNiO under pressure, but their should vary in opposite ways under doping. This characteristic difference suggests a potential experimental pathway to identify which electronic orbital plays the principal role in the formation of superconductivity in this system.

11 pages, 5 figures, 2 tables

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