Ballistic supercurrent discretization and micrometer-long Josephson coupling in germanium

NW Hendrickx, MLV Tagliaferri, M Kouwenhoven, R Li… - Physical Review B, 2019 - APS
NW Hendrickx, MLV Tagliaferri, M Kouwenhoven, R Li, DP Franke, A Sammak, A Brinkman
Physical Review B, 2019APS
We fabricate Josephson field-effect transistors in germanium quantum wells contacted by
superconducting aluminum and demonstrate supercurrents carried by holes that extend
over junction lengths of several micrometers. In superconducting quantum point contacts we
observe discretization of supercurrent, as well as Fabry-Pérot resonances, demonstrating
ballistic transport. The magnetic field dependence of the supercurrent follows a clear
Fraunhofer-like pattern, and Shapiro steps appear upon microwave irradiation. Multiple …
We fabricate Josephson field-effect transistors in germanium quantum wells contacted by superconducting aluminum and demonstrate supercurrents carried by holes that extend over junction lengths of several micrometers. In superconducting quantum point contacts we observe discretization of supercurrent, as well as Fabry-Pérot resonances, demonstrating ballistic transport. The magnetic field dependence of the supercurrent follows a clear Fraunhofer-like pattern, and Shapiro steps appear upon microwave irradiation. Multiple Andreev reflections give rise to conductance enhancement and evidence a transparent interface, confirmed by analyzing the excess current. These demonstrations of ballistic superconducting transport are promising for hybrid quantum technology in germanium.
American Physical Society