We report direct detection of charge tunneling between a quantum dot and a superconducting island through radio-frequency gate sensing. We are able to resolve spin-dependent quasiparticle tunneling as well as two-particle tunneling involving Cooper pairs. The quantum dot can act as an RF-only sensor to characterize the superconductor addition spectrum, enabling us to access subgap states without transport. Our results provide guidance for future dispersive parity measurements of Majorana modes, which can be realized by detecting the parity-dependent tunneling between dots and islands.QRD/Kouwenhoven LabQuTechQN/Kouwenhoven La
We propose a scheme for extracting entangled charge qubits from quantum-dot chains that support zer...
Zigzag and armchair hexagonal graphene quantum dots (GQDs) are employed as tunneling spectrometers t...
Hybrid devices combining quantum dots with superconductors are important building blocks of conventi...
Quantum mechanics yields exciting opportunities for developing novel technologies. In particular, qu...
Spin and topological-qubit based quantum computers require an easily scalable and highly sensitive m...
Dispersive sensing is a powerful technique that enables scalable and high-fidelity readout of solid-...
Quantum computers can solve some problems exponentially faster than classical computers. Unfortunate...
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...
The work presented in this thesis investigates transitions between quantum states in superconducting...
Coupling double-quantum-dot circuits to microwave cavities provides a powerful means to control, cou...
The public defense on 5th June 2020 at 13:00 (1 p.m.) will be organized via remote technology. Link...
Charge detection at microsecond time-scales has far reaching consequences in both technology and in ...
We introduce a scheme for preparation, manipulation, and read out of Majorana zero modes in semicond...
We introduce a scheme for preparation, manipulation, and read out of Majorana zero modes in semicond...
We propose a scheme for extracting entangled charge qubits from quantum-dot chains that support zer...
Zigzag and armchair hexagonal graphene quantum dots (GQDs) are employed as tunneling spectrometers t...
Hybrid devices combining quantum dots with superconductors are important building blocks of conventi...
Quantum mechanics yields exciting opportunities for developing novel technologies. In particular, qu...
Spin and topological-qubit based quantum computers require an easily scalable and highly sensitive m...
Dispersive sensing is a powerful technique that enables scalable and high-fidelity readout of solid-...
Quantum computers can solve some problems exponentially faster than classical computers. Unfortunate...
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...
The work presented in this thesis investigates transitions between quantum states in superconducting...
Coupling double-quantum-dot circuits to microwave cavities provides a powerful means to control, cou...
The public defense on 5th June 2020 at 13:00 (1 p.m.) will be organized via remote technology. Link...
Charge detection at microsecond time-scales has far reaching consequences in both technology and in ...
We introduce a scheme for preparation, manipulation, and read out of Majorana zero modes in semicond...
We introduce a scheme for preparation, manipulation, and read out of Majorana zero modes in semicond...
We propose a scheme for extracting entangled charge qubits from quantum-dot chains that support zer...
Zigzag and armchair hexagonal graphene quantum dots (GQDs) are employed as tunneling spectrometers t...
Hybrid devices combining quantum dots with superconductors are important building blocks of conventi...