collaborators

5 papers

cond-mat.mes-hall2026

Electrical control of the metal-insulator transition in a one dimensional device

J. Craquelin, L. Jarjat, B. Hue +8

Controlling the low energy spectrum at the nanoscale with an external physical parameter has become an important resource for quantum devices. The emergence of an energy gap is one…

cond-mat.mes-hall2026

Nanoscale stray fields from micromagnets for optimal spin qubit architecture

Sandrine Lopes, Quentin Schaeverbeke, Matthieu M. Desjardins +3

On-chip micromagnets generate local magnetic-field asymmetries, enabling electrical control of spin qubits via electric dipole spin resonance and their integration into circuit qua…

cond-mat.mes-hall2025

Parametric Drive of a Double Quantum Dot in a Cavity

L. Jarjat, B. Hue, T. Philippe-Kagan +9

We demonstrate the parametric modulation of a double quantum dot charge dipole coupled to a cavity, at the cavity frequency, achieving an amplified readout signal compared to conve…

cond-mat.mes-hall2025

Microsecond-lived quantum states in a carbon-based circuit driven by cavity photons

B. Neukelmance, B. Hue, Q. Schaeverbeke +16

Semiconductor quantum dots are an attractive platform for the realisation of quantum processors. To achieve long-range coupling between them, quantum dots have been integrated into…

quant-ph2025

Optimal Connectivity from Idle Qubit residual coupling Cross-Talks in a Cavity Mediated Entangling Gate

Andrea Mammola, Quentin Schaeverbeke, Matthieu M. Desjardins

Quantum processors operated through long range interaction mediated by a microwave resonator have been envisioned to allow for high connectivity. The ability to selectively operate…