We present an extensive experimental and theoretical study of the proximity effect in InAs nanowires connected to superconducting electrodes. We fabricate and investigate devices with suspended gate-controlled nanowires and nonsuspended nanowires, with a broad range of lengths and normal-state resistances. We analyze the main features of the current-voltage characteristics: the Josephson current, excess current, and subgap current as functions of length, temperature, magnetic field, and gate voltage, and compare them with theory. The Josephson critical current for a short-length device, L = 30 nm, exhibits a record high magnitude of 800 nA at low temperature that comes close to the theoretically expected value. The critical current in all o...
We have studied mesoscopic Josephson junctions formed by highly n-doped InAs nanowires and supercond...
We report on the fabrication of InAs nanowires coupled to superconducting leads with high critical c...
We have studied the low-temperature transport properties of nanowires contacted by a normal metal as...
We present an extensive experimental and theoretical study of the proximity effect in InAs nanowires...
We present an extensive experimental and theoretical study of the proximity effect in InAs nanowires...
We present an extensive experimental and theoretical study of the proximity effect in InAs nanowires...
High-quality free-standing InAs nanosheets are emerging layered semiconductor materials with potenti...
This work delves into the growth mechanism as well as structural and electrical characterization of ...
Semiconducting nanowires contacted with superconductors are an interesting class of hybrid mesoscopi...
One of the common goals in semiconductor/superconductor hybrid de-vices is to fabricate Schottky bar...
The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is int...
We report conductance and supercurrent of InAs nano wires coupled to Al-superconducting electrodes w...
We report conductance and supercurrent of InAs nano wires coupled to Al-superconducting electrodes w...
We report conductance and supercurrent of InAs nano wires coupled to Al-superconducting electrodes w...
The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is int...
We have studied mesoscopic Josephson junctions formed by highly n-doped InAs nanowires and supercond...
We report on the fabrication of InAs nanowires coupled to superconducting leads with high critical c...
We have studied the low-temperature transport properties of nanowires contacted by a normal metal as...
We present an extensive experimental and theoretical study of the proximity effect in InAs nanowires...
We present an extensive experimental and theoretical study of the proximity effect in InAs nanowires...
We present an extensive experimental and theoretical study of the proximity effect in InAs nanowires...
High-quality free-standing InAs nanosheets are emerging layered semiconductor materials with potenti...
This work delves into the growth mechanism as well as structural and electrical characterization of ...
Semiconducting nanowires contacted with superconductors are an interesting class of hybrid mesoscopi...
One of the common goals in semiconductor/superconductor hybrid de-vices is to fabricate Schottky bar...
The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is int...
We report conductance and supercurrent of InAs nano wires coupled to Al-superconducting electrodes w...
We report conductance and supercurrent of InAs nano wires coupled to Al-superconducting electrodes w...
We report conductance and supercurrent of InAs nano wires coupled to Al-superconducting electrodes w...
The Josephson effect is a fundamental quantum phenomenon where a dissipationless supercurrent is int...
We have studied mesoscopic Josephson junctions formed by highly n-doped InAs nanowires and supercond...
We report on the fabrication of InAs nanowires coupled to superconducting leads with high critical c...
We have studied the low-temperature transport properties of nanowires contacted by a normal metal as...