Isolation from the environment determines the extent to which charge is confined on an island, which manifests as Coulomb oscillations, such as charge dispersion. We investigate the charge dispersion of a nanowire transmon hosting a quantum dot in the junction. We observe rapid suppression of the charge dispersion with increasing junction transparency, consistent with the predicted scaling law, which incorporates two branches of the Josephson potential. We find improved qubit coherence times at the point of highest suppression, suggesting novel approaches for building charge-insensitive qubits. </p
Quantum bits (qubits) are at the heart of quantum information processing schemes. Currently, solid-s...
When two superconductors are electrically connected by a weak link - such as a tunnel barrier - a ze...
This thesis presents measurements of quantum coherence in a single Cooper pair box, where quantum os...
Isolation from the environment determines the extent to which charge is confined on an island, which...
We demonstrate strong suppression of charge dispersion in a semiconductor-based transmon qubit acros...
We present an experimental study of flux- and gate-tunable nanowire transmons with state-of-the-art ...
The tunnelling of quasiparticles across Josephson junctions in superconducting quantum circuits is a...
To illustrate the emergence of Coulomb blockade from coherent quantum phase-slip processes in thin s...
International audienceMicrowave cavities have been widely used to investigate the behavior of closed...
Abstract. We investigate tunneling through a resonant level formed in a carbon nanotube quantum dot ...
The public defense on 5th June 2020 at 13:00 (1 p.m.) will be organized via remote technology. Link...
One of the key challenges in developing quantum networks is to generate single photons with high bri...
The major contribution to decoherence of a double quantum dot or a Josephson-junction charge qubit c...
Dispersive sensing is a powerful technique that enables scalable and high-fidelity readout of solid-...
Spin and topological-qubit based quantum computers require an easily scalable and highly sensitive m...
Quantum bits (qubits) are at the heart of quantum information processing schemes. Currently, solid-s...
When two superconductors are electrically connected by a weak link - such as a tunnel barrier - a ze...
This thesis presents measurements of quantum coherence in a single Cooper pair box, where quantum os...
Isolation from the environment determines the extent to which charge is confined on an island, which...
We demonstrate strong suppression of charge dispersion in a semiconductor-based transmon qubit acros...
We present an experimental study of flux- and gate-tunable nanowire transmons with state-of-the-art ...
The tunnelling of quasiparticles across Josephson junctions in superconducting quantum circuits is a...
To illustrate the emergence of Coulomb blockade from coherent quantum phase-slip processes in thin s...
International audienceMicrowave cavities have been widely used to investigate the behavior of closed...
Abstract. We investigate tunneling through a resonant level formed in a carbon nanotube quantum dot ...
The public defense on 5th June 2020 at 13:00 (1 p.m.) will be organized via remote technology. Link...
One of the key challenges in developing quantum networks is to generate single photons with high bri...
The major contribution to decoherence of a double quantum dot or a Josephson-junction charge qubit c...
Dispersive sensing is a powerful technique that enables scalable and high-fidelity readout of solid-...
Spin and topological-qubit based quantum computers require an easily scalable and highly sensitive m...
Quantum bits (qubits) are at the heart of quantum information processing schemes. Currently, solid-s...
When two superconductors are electrically connected by a weak link - such as a tunnel barrier - a ze...
This thesis presents measurements of quantum coherence in a single Cooper pair box, where quantum os...