paper

Competing Pair Density Wave and Uniform -wave Superconductivity in Phase Separated 214 Cuprates at the 1/8 Anomaly

arXiv:2505.08141

Abstract

Compelling evidence exists for electronic phase separation in cuprate high- superconductors, emerging near 1/8 hole doping. At these dopings and low temperatures, intertwined charge and spin stripes coexist with more uniformly doped regions in the two-dimensional (2) copper-oxide planes. Each region is capable of developing superconducting pairing, either as a pair density wave (PDW) within the stripes or as a uniform -wave condensate (-SC) in the more homogeneous regions. Using neutron scattering on single crystals of LaNdSrCuO, we demonstrate that the onset temperatures for spin stripe order () and superconductivity () merge as the average ordered moment vanishes in LSCO (), whereas Nd doping stabilizes static stripe order and suppresses . Because the spin stripes possess the same in-plane periodicity (8) as the PDW and establish the framework in which the PDW resides, the stabilization of spin stripe order enhances PDW correlations. Thus, the competition between -wave pairing in the uniform regions and PDW pairing in the stripe-ordered regions can be controlled by the Nd concentration in LaNdSrCuO, allowing the superconducting to vary by nearly an order of magnitude at a fixed 1/8 hole doping.