activity
20242026
collaborators

5 papers

quant-ph2026

Observation of a power transfer controlled by the phase of a quantum superposition

Nathanaël Cottet, Sébastien Jezouin, Bogdan Reznychenko +2

A driven qubit exchanges energy with the propagating modes that drive it. When two spatially separated modes drive a single qubit with opposite amplitudes, their net action on the…

quant-ph2025

Enhancing dissipative cat qubit protection by squeezing

Rémi Rousseau, Diego Ruiz, Emanuele Albertinale +38

Dissipative cat-qubits are a promising architecture for quantum processors due to their built-in quantum error correction. By leveraging two-photon stabilization, they achieve an e…

quant-ph2024

Harnessing two-photon dissipation for enhanced quantum measurement and control

Antoine Marquet, Simon Dupouy, Ulysse Réglade +8

Dissipation engineering offers a powerful tool for quantum technologies. Recently, new superconducting devices have achieved an engineered two-photon dissipation rate exceeding all…

quant-ph2024

Quantum control of a cat-qubit with bit-flip times exceeding ten seconds

Ulysse Réglade, Adrien Bocquet, Ronan Gautier +14

Quantum bits (qubits) are prone to several types of errors due to uncontrolled interactions with their environment. Common strategies to correct these errors are based on architect…

quant-ph2024

Autoparametric resonance extending the bit-flip time of a cat qubit up to 0.3 s

Antoine Marquet, Antoine Essig, Joachim Cohen +9

Cat qubits, for which logical and are coherent states of a harmonic mode, offer a promising route towards quantum error correction. Using di…