activity
20202026
most citedBaseband control of single-electron silicon spin qubits in two dimensions

1 citations · 1 across the 4 of their papers we have counts for

collaborators

5 papers

cond-mat.mes-hall2026

Dispersive Readout of a SiMOS Quantum Dot Using a Flip-Chip Integrated Microwave Resonator

Vo Kim Hieu Van, Santiago Serrano, Cédric Bohémier +11

Heterogeneous integration provides a promising route to combine semiconductor quantum dot devices and superconducting microwave circuits, while allowing each component to be fabric…

cond-mat.mes-hall2026

SiMOS quantum-dot spin qubits enabled by extreme-ultraviolet lithography

Thomas Van Caekenberghe, Paul Steinacker, Bart Raes +31

The realization of large-scale silicon quantum processors requires spin qubits compatible with advanced semiconductor manufacturing technologies, demanding lithographic processes t…

cond-mat.mes-hall2025

Tracking spin qubit frequency variations over 912 days

Kenji Capannelli, Brennan Undseth, Irene Fernández de Fuentes +9

Solid-state qubits are sensitive to their microscopic environment, causing the qubit properties to fluctuate on a wide range of timescales. The sub-Hz end of the spectrum is usuall…

cond-mat.mes-hall20241 cited

Baseband control of single-electron silicon spin qubits in two dimensions

Florian K. Unseld, Brennan Undseth, Eline Raymenants +9

Micromagnet-enabled electric-dipole spin resonance (EDSR) is an established method of high-fidelity single-spin control in silicon. However, the resulting architectural limitations…

cond-mat.mes-hall2020

On-chip Integration of Si/SiGe-based Quantum Dots and Switched-capacitor Circuits

Y. Xu, F. K. Unseld, A. Corna +9

Solid-state qubits integrated on semiconductor substrates currently require at least one wire from every qubit to the control electronics, leading to a so-called wiring bottleneck…