The Josephson effect is one of the most studied macroscopic quantum phenomena in condensed matter physics and has been an essential part of the quantum technologies development over the last decades. It is already used in many applications such as magnetometry, metrology, quantum computing, detectors or electronic refrigeration. However, developing devices in which the induced superconductivity can be monitored, both spatially and in its magnitude, remains a serious challenge. In this work, we have used local gates to control confinement, amplitude and density profile of the supercurrent induced in one-dimensional nanoscale constrictions, defined in bilayer graphene-hexagonal boron nitride van der Waals heterostructures. The combination of ...
This review discusses the electronic properties and the prospective research directions of supercond...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
Graphene is a 2D material based on carbon atoms which presents a honeycomb lattice and is characteri...
The Josephson effect is one of the most studied macroscopic quantum phenomena in condensed matter ph...
State-of-the-art edge-connected graphene/hexagonal boron nitride van der Waals heterostructures prov...
Graphene provides a rich platform for the study of interaction-induced broken symmetry states due to...
Superconductor–semiconductor hybrid devices are interesting not only for their known and potential a...
We present measurements of DC superconducting quantum interference devices based on Nb/graphene/Nb J...
In this Master thesis work we present and discuss the optimization of the fabrication protocol for h...
DoctorThe graphene is rapidly emerging new material from condensed physics because it is a gap-less ...
Magic-angle twisted bilayer graphene (MATBG) has recently emerged as a highly tunable two-dimension...
Graphene-based Josephson junctions provide a novel platform for studying the proximity effect due to...
In a conventional Josephson junction of graphene, the supercurrent is not turned off even at the cha...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
This review discusses the electronic properties and the prospective research directions of supercond...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
Graphene is a 2D material based on carbon atoms which presents a honeycomb lattice and is characteri...
The Josephson effect is one of the most studied macroscopic quantum phenomena in condensed matter ph...
State-of-the-art edge-connected graphene/hexagonal boron nitride van der Waals heterostructures prov...
Graphene provides a rich platform for the study of interaction-induced broken symmetry states due to...
Superconductor–semiconductor hybrid devices are interesting not only for their known and potential a...
We present measurements of DC superconducting quantum interference devices based on Nb/graphene/Nb J...
In this Master thesis work we present and discuss the optimization of the fabrication protocol for h...
DoctorThe graphene is rapidly emerging new material from condensed physics because it is a gap-less ...
Magic-angle twisted bilayer graphene (MATBG) has recently emerged as a highly tunable two-dimension...
Graphene-based Josephson junctions provide a novel platform for studying the proximity effect due to...
In a conventional Josephson junction of graphene, the supercurrent is not turned off even at the cha...
The superconducting proximity effect in graphene can be used to create Josephson junctions with crit...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
This review discusses the electronic properties and the prospective research directions of supercond...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
Graphene is a 2D material based on carbon atoms which presents a honeycomb lattice and is characteri...