paper

Structural transition and possible pressure-induced superconductivity in a suboxide LaPbO

arXiv:2508.10080 · doi:10.1103/jhbz-8jt4

Abstract

Here we report a structural phase transition and its possible competition with superconductivity in the suboxide LaPbO. Upon cooling through = 225 K, LaPbO transforms from a high-temperature I4/mcm to a low-temperature P4/ncc structure in which La - Pb dimerization along the c-axis occurs. This transition is accompanied by anomalies in the temperature dependence of electrical resistivity and specific heat. High-pressure electrical transport measurements reveal that hydrostatic pressure suppresses the structural transition and possibly induces superconductivity with a maximum superconducting temperature of 10 K. Density functional theory calculations show minimal changes in the electronic density of states and no gap opening at across , suggesting that the transition is driven by bonding effects rather than Fermi surface instability. These findings establish LaPbO as a promising platform for exploring the interplay between weak structural transitions and superconductivity.

9 figures, 9 pages

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