Determining the superconducting order parameter of UPt$_3$ using scanning tunneling microscopy
Abstract
Superconductivity, a state in which electrical currents can flow without resistance, occurs because of pairing of electrons into quasiparticles with integer spin . In practically all known superconducting materials, these pairs form a singlet with . Finding a material that has triplet pairing, , would have profound fundamental and technological implications. UPt has been a key candidate material for spin-triplet superconductivity. Because of a lack of direct evidence for the pairing symmetry, the nature of the superconducting pairing remains under debate. Here, we use ultra-low temperature scanning tunneling microscopy to resolve this question. Our data reveals a zero-bias Andreev bound state within the gap for a surface normal to the -axis of UPt. The superconducting origin of the features is confirmed through vortex imaging. For triplet pairing, such an Andreev state is fragile against Rashba spin-splitting, whereas for singlet pairing it remains robust, classifying UPt as a spin-singlet superconductor with a chiral order parameter.
Cite
@article{arxiv.2512.15845,
title = {Determining the superconducting order parameter of UPt$_3$ using scanning tunneling microscopy},
author = {Rebecca Bisset and Luke C. Rhodes and Hugo Decitre and Matthew J. Neat and Ana Maldonado and Andrew Huxley and Carolina A. Marques and Peter Wahl},
journal= {arXiv preprint arXiv:2512.15845},
year = {2025}
}
Comments
23 pages including supplementary materials, 8 figures