International audienceA semiconductor nanowire with strong spin-orbit coupling in proximity to a superconductor is predicted to display Majorana edge states emerging under a properly oriented magnetic field. The experimental investigation of these exotic states requires assessing the one-dimensional (1D) character of the nanowire and understanding the superconducting proximity effect in the presence of a magnetic field. Here, we explore the quasi-ballistic 1D transport regime of an InAs nanowire with Ta contacts. Fine-tuned by means of local gates, the observed plateaus of approximately quantized conductance hide the presence of a localized electron, giving rise to a lurking Coulomb blockade effect and Kondo physics. When Ta becomes superco...
Semiconductor nanowires such as InAs and InSb are promising materials for studying Majorana zero mod...
Semiconductor nanowires have opened new research avenues in quantum transport owing to their confine...
In the voyage towards solving increasingly challenging computations of physical systems, quantum com...
International audienceA semiconductor nanowire with strong spin-orbit coupling in proximity to a sup...
A semiconductor nanowire with strong spin-orbit coupling in proximity to a superconductor is predict...
International audienceA semiconductor nanowire with strong spin-orbit coupling in proximity to a sup...
A semiconductor nanowire with strong spin-orbit coupling in proximity to a superconductor is predict...
A semiconductor nanowire with strong spin-orbit coupling in proximity to a superconductor is predict...
One-dimensional ballistic transport is demonstrated for a high-mobility InAs nanowire device. Unlike...
\u3cp\u3eSemiconductor nanowires have opened new research avenues in quantum transport owing to thei...
Proposals for studying topological superconductivity and Majorana bound states in a nanowire proximi...
Proposals for studying topological superconductivity and Majorana bound states in a nanowire proximi...
Spin-momentum locking in a semiconductor device with strong spin-orbit coupling (SOC) is thought to ...
Semiconductor nanowires have opened new research avenues in quantum transport owing to their confine...
Semiconductor nanowires have opened new research avenues in quantum transport owing to their confine...
Semiconductor nanowires such as InAs and InSb are promising materials for studying Majorana zero mod...
Semiconductor nanowires have opened new research avenues in quantum transport owing to their confine...
In the voyage towards solving increasingly challenging computations of physical systems, quantum com...
International audienceA semiconductor nanowire with strong spin-orbit coupling in proximity to a sup...
A semiconductor nanowire with strong spin-orbit coupling in proximity to a superconductor is predict...
International audienceA semiconductor nanowire with strong spin-orbit coupling in proximity to a sup...
A semiconductor nanowire with strong spin-orbit coupling in proximity to a superconductor is predict...
A semiconductor nanowire with strong spin-orbit coupling in proximity to a superconductor is predict...
One-dimensional ballistic transport is demonstrated for a high-mobility InAs nanowire device. Unlike...
\u3cp\u3eSemiconductor nanowires have opened new research avenues in quantum transport owing to thei...
Proposals for studying topological superconductivity and Majorana bound states in a nanowire proximi...
Proposals for studying topological superconductivity and Majorana bound states in a nanowire proximi...
Spin-momentum locking in a semiconductor device with strong spin-orbit coupling (SOC) is thought to ...
Semiconductor nanowires have opened new research avenues in quantum transport owing to their confine...
Semiconductor nanowires have opened new research avenues in quantum transport owing to their confine...
Semiconductor nanowires such as InAs and InSb are promising materials for studying Majorana zero mod...
Semiconductor nanowires have opened new research avenues in quantum transport owing to their confine...
In the voyage towards solving increasingly challenging computations of physical systems, quantum com...