Gate-tunable Josephson junctions embedded in a microwave environment provide a promising platform to in-situ engineer and optimize novel superconducting quantum circuits. The key quantity for the circuit design is the phase-dependent complex admittance of the junction, which can be probed by sensing an rf SQUID with a tank circuit. Here, we investigate a graphene-based Josephson junction as a prototype gate-tunable element enclosed in a SQUID loop that is inductively coupled to a superconducting resonator operating at 3 GHz. With a concise circuit model that describes the dispersive and dissipative response of the coupled system, we extract the phase-dependent junction admittance corrected for self-screening of the SQUID loop. We decompose ...
We show that a system of Josephson junctions coupled via low-resistance tunneling contacts to graphe...
We investigate the current-phase relation (CPR) of long diffusive superconductor–normal-metal–superc...
Graphene-based Josephson junctions provide a novel platform for studying the proximity effect due to...
Gate-tunable Josephson junctions embedded in a microwave environment provide a promising platform to...
Josephson junctions (JJ) are a fundamental component of microwave quantum circuits, such as tunable ...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
This thesis investigates fundamental properties of Josephson junctions embedded in microwave circuit...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
Josephson junctions are the basis of superconducting qubits, amplifiers, and magnetometers. Histori...
After the introduction in Ch. 1, we introduce in Ch. 2 the fundamental concepts of superconductivity...
Superconductor–semiconductor hybrid devices are interesting not only for their known and potential a...
We present an extensive theoretical analysis of the supercurrent of a superconducting point contact ...
In a conventional Josephson junction of graphene, the supercurrent is not turned off even at the cha...
Josephson junctions and superconducting quantum interference devices (SQUIDs) with graphene as the w...
The current-phase relation (CPR) of a Josephson junction reveals valuable information about the micr...
We show that a system of Josephson junctions coupled via low-resistance tunneling contacts to graphe...
We investigate the current-phase relation (CPR) of long diffusive superconductor–normal-metal–superc...
Graphene-based Josephson junctions provide a novel platform for studying the proximity effect due to...
Gate-tunable Josephson junctions embedded in a microwave environment provide a promising platform to...
Josephson junctions (JJ) are a fundamental component of microwave quantum circuits, such as tunable ...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
This thesis investigates fundamental properties of Josephson junctions embedded in microwave circuit...
The current-phase relation (CPR) of a Josephson junction (JJ) determines how the supercurrent evolve...
Josephson junctions are the basis of superconducting qubits, amplifiers, and magnetometers. Histori...
After the introduction in Ch. 1, we introduce in Ch. 2 the fundamental concepts of superconductivity...
Superconductor–semiconductor hybrid devices are interesting not only for their known and potential a...
We present an extensive theoretical analysis of the supercurrent of a superconducting point contact ...
In a conventional Josephson junction of graphene, the supercurrent is not turned off even at the cha...
Josephson junctions and superconducting quantum interference devices (SQUIDs) with graphene as the w...
The current-phase relation (CPR) of a Josephson junction reveals valuable information about the micr...
We show that a system of Josephson junctions coupled via low-resistance tunneling contacts to graphe...
We investigate the current-phase relation (CPR) of long diffusive superconductor–normal-metal–superc...
Graphene-based Josephson junctions provide a novel platform for studying the proximity effect due to...