The superconducting proximity effect has recently attracted a renewed interest as the basis of topologically nontrivial states in materials with a large spin-orbit interaction, with protected boundary states useful for quantum information technologies. However, spectroscopy of these states is challenging because of the limited control of conventional tunnel barriers. Here we report electronic spectroscopy measurements of the proximity gap in a semiconducting indium arsenide nanowire segment coupled to a superconductor, using quantum dots formed deterministically during the crystal growth. We extract characteristic parameters describing the proximity gap, which is suppressed for lower electron densities and fully developed for larger ones. T...
We present tunnel spectroscopy experiments on the proximity effect in lateral superconductor–normal-...
\u3cp\u3eWe study transport mediated by Andreev bound states formed in InSb nanowire quantum dots. T...
Superconductivity is a fascinating electronic order in which electrons pair up due to an attractive ...
The superconducting proximity effect has recently attracted a renewed interest as the basis of topol...
Bound states in superconductor-nanowire hybrid devices play a central role, carrying information on ...
First discovered by Holm and Meissner in 1932, the superconducting proximity effect has remained a s...
A quantum dot coupled to a superconducting contact provides a tunable artificial analog of a magneti...
We report the realization of a hybrid superconductor-quantum dot device by means of top-down nanofab...
We theoretically investigate electronic transport through a junction where a quantum dot (QD) is tun...
We theoretically investigate electronic transport through a junction where a quantum dot (QD) is tun...
We report low-temperature transport measurements performed on a planar Nb-InGaAs-Nb proximity Joseph...
In quantum dot (QD) electron transport experiments additional features can appear in the differentia...
Subgap states in semiconducting-superconducting nanowire hybrid devices are controversially discusse...
We report on the experimental observation of the proximity induced superconductivity in an indium ga...
The proximity effect in semiconductor-superconductor nanowires is expected to generate an in- duced ...
We present tunnel spectroscopy experiments on the proximity effect in lateral superconductor–normal-...
\u3cp\u3eWe study transport mediated by Andreev bound states formed in InSb nanowire quantum dots. T...
Superconductivity is a fascinating electronic order in which electrons pair up due to an attractive ...
The superconducting proximity effect has recently attracted a renewed interest as the basis of topol...
Bound states in superconductor-nanowire hybrid devices play a central role, carrying information on ...
First discovered by Holm and Meissner in 1932, the superconducting proximity effect has remained a s...
A quantum dot coupled to a superconducting contact provides a tunable artificial analog of a magneti...
We report the realization of a hybrid superconductor-quantum dot device by means of top-down nanofab...
We theoretically investigate electronic transport through a junction where a quantum dot (QD) is tun...
We theoretically investigate electronic transport through a junction where a quantum dot (QD) is tun...
We report low-temperature transport measurements performed on a planar Nb-InGaAs-Nb proximity Joseph...
In quantum dot (QD) electron transport experiments additional features can appear in the differentia...
Subgap states in semiconducting-superconducting nanowire hybrid devices are controversially discusse...
We report on the experimental observation of the proximity induced superconductivity in an indium ga...
The proximity effect in semiconductor-superconductor nanowires is expected to generate an in- duced ...
We present tunnel spectroscopy experiments on the proximity effect in lateral superconductor–normal-...
\u3cp\u3eWe study transport mediated by Andreev bound states formed in InSb nanowire quantum dots. T...
Superconductivity is a fascinating electronic order in which electrons pair up due to an attractive ...