-periodic supercurrent tuned by an axial magnetic flux in topological insulator nanowires
arXiv:2110.05143
Abstract
Topological insulator (TI) nanowires in proximity with conventional superconductors have been proposed as a tunable platform to realize topological superconductivity and Majorana zero modes (MZM). The tuning is done using an axial magnetic flux which allows transforming the system from trivial at to topologically nontrivial when half a magnetic flux quantum threads the wire's cross-section. Here we explore the expected topological transition in TI-wire-based Josephson junctions as a function of magnetic flux by probing the -periodic fraction of the supercurrent, which is considered as an indicator of topological superconductivity. Our data suggest that this -periodic supercurrent is at lower magnetic field largely of trivial origin, but that at magnetic fields above topological -periodic supercurrents take over.