| openaire: EC/H2020/766714/EU//HiTIMe | openaire: EC/H2020/766025/EU//QuESTechWe have used Bi 2 Se 3 nanoribbons, grown by catalyst-free physical vapor deposition to fabricate high quality Josephson junctions with Al superconducting electrodes. In our devices, we observe a pronounced reduction of the Josephson critical current density J c by reducing the width of the junction, which in our case corresponds to the width of the nanoribbon. Because the topological surface states extend over the entire circumference of the nanoribbon, the superconducting transport associated with them is carried by modes on both the top and bottom surfaces of the nanoribbon. We show that the J c reduction as a function of the nanoribbon width can be accounted ...
In Josephson junctions, a supercurrent across a nonsuperconducting weak link is carried by electron-...
The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is int...
Hybrid superconductor/semiconductor devices constitute a powerful platform where intriguing topologi...
We have used Bi 2 Se 3 nanoribbons, grown by catalyst-free physical vapor deposition to fabricate hi...
Three-dimensional topological insulators have been subject of increased interest in the past few yea...
Networks of three-dimensional nanoribbons of topological insulators (TI) in combination with superco...
Three-dimensional topological insulators form a new material class which is predicted to hold Majora...
Topological insulators in contact with a superconductor could house unusual physical states such as ...
A Josephson supercurrent has been induced into the three-dimensional topological insulator Bi Sb Te ...
We report on the fabrication and electrical transport properties of superconducting junctions made o...
Concepts for quantum computation technologies are based on the isolation of a quantum system that ha...
Funding Information: This work was supported by the European Union’s H2020 under the Marie Curie Act...
In superconductor-topological insulator-superconductor hybrid junctions, the barrier edge states are...
In superconductor-topological insulator-superconductor hybrid junctions, the barrier edge states are...
Using nonequilibrium Green's functions, we studied numerically the transport properties of a Jo...
In Josephson junctions, a supercurrent across a nonsuperconducting weak link is carried by electron-...
The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is int...
Hybrid superconductor/semiconductor devices constitute a powerful platform where intriguing topologi...
We have used Bi 2 Se 3 nanoribbons, grown by catalyst-free physical vapor deposition to fabricate hi...
Three-dimensional topological insulators have been subject of increased interest in the past few yea...
Networks of three-dimensional nanoribbons of topological insulators (TI) in combination with superco...
Three-dimensional topological insulators form a new material class which is predicted to hold Majora...
Topological insulators in contact with a superconductor could house unusual physical states such as ...
A Josephson supercurrent has been induced into the three-dimensional topological insulator Bi Sb Te ...
We report on the fabrication and electrical transport properties of superconducting junctions made o...
Concepts for quantum computation technologies are based on the isolation of a quantum system that ha...
Funding Information: This work was supported by the European Union’s H2020 under the Marie Curie Act...
In superconductor-topological insulator-superconductor hybrid junctions, the barrier edge states are...
In superconductor-topological insulator-superconductor hybrid junctions, the barrier edge states are...
Using nonequilibrium Green's functions, we studied numerically the transport properties of a Jo...
In Josephson junctions, a supercurrent across a nonsuperconducting weak link is carried by electron-...
The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is int...
Hybrid superconductor/semiconductor devices constitute a powerful platform where intriguing topologi...