151 citations · 329 across the 8 of their papers we have counts for
9 papers
Charge detection in an array of CMOS quantum dots
Emmanuel Chanrion, David J. Niegemann, Benoit Bertrand +15
The recent development of arrays of quantum dots in semiconductor nanostructures highlights the progress of quantum devices toward large scale. However, how to realize such arrays…
All-Electrical Control of an Electron Spin/Valley Quantum Bit in SOI CMOS Technology
Léo Bourdet, Louis Hutin, Benoit Bertrand +14
We fabricated Quantum Dot (QD) devices using a standard SOI CMOS process flow, and demonstrated that the spin of confined electrons could be controlled via a local electrical-field…
Gate reflectometry for probing charge and spin states in linear Si MOS split-gate arrays
L. Hutin, B. Bertrand, E. Chanrion +20
We fabricated linear arrangements of multiple splitgate devices along an SOI mesa, thus forming a 2xN array of individually controllable Si quantum dots (QDs) with nearest neighbor…
Towards scalable silicon quantum computing
M. Vinet, L. Hutin, B. Bertrand +20
We report the efforts and challenges dedicated towards building a scalable quantum computer based on Si spin qubits. We review the advantages of relying on devices fabricated in a…
All-Electrical Control of a Hybrid Electron Spin/Valley Quantum Bit in SOI CMOS Technology
L. Hutin, L. Bourdet, B. Bertrand +14
We successfully demonstrated experimentally the electrical-field-mediated control of the spin of electrons confined in an SOI Quantum Dot (QD) device fabricated with a standard CMO…
Fast gate-based readout of silicon quantum dots using Josephson parametric amplification
S. Schaal, I. Ahmed, J. A. Haigh +12
Spins in silicon quantum devices are promising candidates for large-scale quantum computing. Gate-based sensing of spin qubits offers compact and scalable readout with high fidelit…