paper

Geometric Rashba Control of Polar Pairing at a-LaAlO/KTaO Interfaces

arXiv:2604.25805

Abstract

At amorphous-LaAlO/KTaO interfaces, superconductivity coexists with switchable polar nanoregions (PNRs), and depends quasi-linearly on crystallographic orientation. We propose a minimal theoretical framework in which overdamped PNR fluctuations mediate pairing, while geometric Rashba coupling controls its angular dependence. Within a reduced isotropic helicity-band description, the leading dynamic Rashba vertex scales as , where is the angle between the interface normal and the axis, yielding . Numerical Matsubara--Eliashberg solutions show that this nonlinear mapping reproduces the observed quasi-linear . Because the Rashba-activated polar channel is amplified by the large atomic spin-orbit coupling of Ta orbitals, the framework also offers a parametric---not yet quantitative---rationale for why KTaO interfaces are both more orientation-sensitive and higher- than their SrTiO counterparts.