We show a hard superconducting gap in a Ge–Si nanowire Josephson transistor up to in-plane magnetic fields of 250 mT, an important step toward creating and detecting Majorana zero modes in this system. A hard gap requires a highly homogeneous tunneling heterointerface between the superconducting contacts and the semiconducting nanowire. This is realized by annealing devices at 180 °C during which aluminum interdiffuses and replaces the germanium in a section of the nanowire. Next to Al, we find a superconductor with lower critical temperature (TC = 0.9 K) and a higher critical field (BC = 0.9–1.2 T). We can therefore selectively switch either superconductor to the normal state by tuning the temperature and the magnetic field and observe tha...
We report on the fabrication and electrical transport properties of superconducting junctions made o...
With the recent achievement of extremely high-quality epitaxial interfaces between InAs nanowires an...
Low dimensional semiconducting structures with strong spin–orbit interaction (SOI) and induced super...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
\u3cp\u3eWe show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
A quantum computer requires a quantum-mechanical two-level system with coherent control over its eig...
The data is taken by the standard transport measurements, more details can be found in the accompany...
International audienceSuperconductor–semiconductor–superconductor heterostructures are attractive fo...
International audienceSuperconductor–semiconductor–superconductor heterostructures are attractive fo...
We report on the fabrication and electrical transport properties of superconducting junctions made o...
With the recent achievement of extremely high-quality epitaxial interfaces between InAs nanowires an...
Low dimensional semiconducting structures with strong spin–orbit interaction (SOI) and induced super...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
\u3cp\u3eWe show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
We show a hard superconducting gap in a Ge-Si nanowire Josephson transistor up to in-plane magnetic ...
A quantum computer requires a quantum-mechanical two-level system with coherent control over its eig...
The data is taken by the standard transport measurements, more details can be found in the accompany...
International audienceSuperconductor–semiconductor–superconductor heterostructures are attractive fo...
International audienceSuperconductor–semiconductor–superconductor heterostructures are attractive fo...
We report on the fabrication and electrical transport properties of superconducting junctions made o...
With the recent achievement of extremely high-quality epitaxial interfaces between InAs nanowires an...
Low dimensional semiconducting structures with strong spin–orbit interaction (SOI) and induced super...