activity
20242026
collaborators

5 papers

cond-mat.mes-hall2026

Multiplexed cryo-CMOS control of an isolated double quantum dot

Mathieu Darnas, Mathilde Ouvrier-Buffet, Antoine Faurie +12

Scalable spin-based quantum computing demands precise and stable control of a large number of gate-defined quantum dots while minimizing wiring complexity and thermal load. Control…

cond-mat.mes-hall2025

A foundry-fabricated spin qubit unit cell with in-situ dispersive readout

Pierre Hamonic, Mathieu Toubeix, Guillermo Haas +10

Spin qubits based on semiconductor quantum dots are a promising prospect for quantum computation because of their high coherence times and gate fidelities. However, scaling up thos…

cond-mat.mes-hall2025

Evidence of Coulomb liquid phase in few-electron droplets

Jashwanth Shaju, Elina Pavlovska, Ralfs Suba +12

Emergence of universal collective behaviour from interactions within a sufficiently large group of elementary constituents is a fundamental scientific paradigm. In physics, correla…

cond-mat.mes-hall2025

Electronic interferometry with ultrashort plasmonic pulses

Seddik Ouacel, Lucas Mazzella, Thomas Kloss +17

Electronic flying qubits offer an interesting alternative to photonic qubits: electrons propagate slower, hence easier to control in real time, and Coulomb interaction enables dire…

cond-mat.mes-hall2024

Combining multiplexed gate-based readout and isolated CMOS quantum dot arrays

Pierre Hamonic, Martin Nurizzo, Jayshankar Nath +15

Semiconductor quantum dot arrays are a promising platform to perform spin-based error-corrected quantum computation with large numbers of qubits. However, due to the diverging numb…