paper

Pressure-induced superconductivity in epitaxially-stabilized PrNiO films

arXiv:2605.20653

Abstract

The discovery of high critical-temperature superconductivity in LaNiO under high pressure has led to a rapid expansion of the range through lanthanide substitution, and to ambient-pressure superconductivity in strained thin films, yet the exploration of new bilayer nickelates remains strongly constrained by thermodynamic stability. Beyond the difficulty of synthesis of bulk single-crystals, here we report on the pressure-induced high- superconductivity in epitaxially-stabilized PrNiO thin films. While the PrNiO films exhibit insulating behaviour at ambient pressure regardless of ozone-annealing treatment, they show -linear metallic transport and superconductivity reaching an onset of 66 K and zero-resistance at nearly 40 K at 22 GPa. Furthermore, NdNiO, with the smaller rare-earth ion Nd, can also be stabilized, however, superconductivity is not observed in the measured pressure range. Epitaxial stabilization enables us to examine the dependence of and the critical pressure for superconductivity on the ion in NiO ( = La, Pr, Nd). These results suggest that a higher is required for smaller ions, consistent with trends observed in bulk studies of substitution. This study demonstrates that epitaxial stabilization is a powerful technique to further expand the family of superconducting bilayer nickelates.

23 pages, 9 figures