Semiconducting nanowire Josephson junctions represent an attractive platform to investigate the anomalous Josephson effect and detect topological superconductivity. However, an external magnetic field generally suppresses the supercurrent through hybrid nanowire junctions and significantly limits the field range in which the supercurrent phenomena can be studied. In this work, we investigate the impact of the length of InSb-Al nanowire Josephson junctions on the supercurrent resilience against magnetic fields. We find that the critical parallel field of the supercurrent can be considerably enhanced by reducing the junction length. Particularly, in 30 nm long junctions supercurrent can persist up to 1.3 T parallel field─approaching the criti...
We report evidence of non-reciprocal dissipation-less transport in single ballistic InSb nanoflag Jo...
Josephson junctions form a two-level system which is used as a building block for many types of supe...
The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is int...
We experimentally studied the Josephson supercurrent in Nb/InN-nanowire/Nb junctions. Large critica...
\u3cp\u3eJunctions created by coupling two superconductors via a semiconductor nanowire in the prese...
International audienceJunctions created by coupling two superconductors via a semiconductor nanowire...
Junctions created by coupling two superconductors via a semiconductor nanowire in the presence of hi...
International audienceJunctions created by coupling two superconductors via a semiconductor nanowire...
Junctions created by coupling two superconductors via a semiconductor nanowire in the presence of hi...
International audienceJunctions created by coupling two superconductors via a semiconductor nanowire...
International audienceJunctions created by coupling two superconductors via a semiconductor nanowire...
International audienceJunctions created by coupling two superconductors via a semiconductor nanowire...
Epitaxially grown, high quality semiconductor InSb nanowires are emerging material systems for the d...
Epitaxially grown, high quality semiconductor InSb nanowires are emerging material systems for the d...
Epitaxially grown, high quality semiconductor InSb nanowires are emerging material systems for the d...
We report evidence of non-reciprocal dissipation-less transport in single ballistic InSb nanoflag Jo...
Josephson junctions form a two-level system which is used as a building block for many types of supe...
The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is int...
We experimentally studied the Josephson supercurrent in Nb/InN-nanowire/Nb junctions. Large critica...
\u3cp\u3eJunctions created by coupling two superconductors via a semiconductor nanowire in the prese...
International audienceJunctions created by coupling two superconductors via a semiconductor nanowire...
Junctions created by coupling two superconductors via a semiconductor nanowire in the presence of hi...
International audienceJunctions created by coupling two superconductors via a semiconductor nanowire...
Junctions created by coupling two superconductors via a semiconductor nanowire in the presence of hi...
International audienceJunctions created by coupling two superconductors via a semiconductor nanowire...
International audienceJunctions created by coupling two superconductors via a semiconductor nanowire...
International audienceJunctions created by coupling two superconductors via a semiconductor nanowire...
Epitaxially grown, high quality semiconductor InSb nanowires are emerging material systems for the d...
Epitaxially grown, high quality semiconductor InSb nanowires are emerging material systems for the d...
Epitaxially grown, high quality semiconductor InSb nanowires are emerging material systems for the d...
We report evidence of non-reciprocal dissipation-less transport in single ballistic InSb nanoflag Jo...
Josephson junctions form a two-level system which is used as a building block for many types of supe...
The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is int...