A single hole spin with enhanced coherence in natural silicon

N Piot, B Brun, V Schmitt, S Zihlmann, VP Michal… - Nature …, 2022 - nature.com
Semiconductor spin qubits based on spin–orbit states are responsive to electric field
excitations, allowing for practical, fast and potentially scalable qubit control. Spin electric …

Silicon spin qubits from laboratory to industry

M De Michielis, E Ferraro, E Prati, L Hutin… - Journal of Physics D …, 2023 - iopscience.iop.org
Quantum computation (QC) is one of the most challenging quantum technologies that
promise to revolutionize data computation in the long-term by outperforming the classical …

Probing the limits of gate-based charge sensing

MF Gonzalez-Zalba, S Barraud, AJ Ferguson… - Nature …, 2015 - nature.com
Quantum computation requires a qubit-specific measurement capability to readout the final
state of individual qubits. Promising solid-state architectures use external readout …

CMOS compatibility of semiconductor spin qubits

ND Stuyck, A Saraiva, W Gilbert, JC Pardo, R Li… - arxiv preprint arxiv …, 2024 - arxiv.org
Several domains of society will be disrupted once millions of high-quality qubits can be
brought together to perform fault-tolerant quantum computing (FTQC). All quantum …

Charge detection in an array of CMOS quantum dots

E Chanrion, DJ Niegemann, B Bertrand, C Spence… - Physical Review …, 2020 - APS
The recent development of arrays of quantum dots in semiconductor nanostructures
highlights the progress of quantum devices toward a large scale. However, how to realize …

Spin readout of a CMOS quantum dot by gate reflectometry and spin-dependent tunneling

VN Ciriano-Tejel, MA Fogarty, S Schaal, L Hutin… - PRX Quantum, 2021 - APS
Silicon spin qubits are promising candidates for realizing large-scale quantum processors,
benefitting from a magnetically quiet host material and the prospects of leveraging the …

Electrically driven electron spin resonance mediated by spin–valley–orbit coupling in a silicon quantum dot

A Corna, L Bourdet, R Maurand, A Crippa… - npj quantum …, 2018 - nature.com
The ability to manipulate electron spins with voltage-dependent electric fields is key to the
operation of quantum spintronics devices, such as spin-based semiconductor qubits. A …

Electrical Control of g-Factor in a Few-Hole Silicon Nanowire MOSFET

B Voisin, R Maurand, S Barraud, M Vinet, X Jehl… - Nano …, 2016 - ACS Publications
Hole spins in silicon represent a promising yet barely explored direction for solid-state
quantum computation, possibly combining long spin coherence, resulting from a reduced …

Quantum transport in 40-nm MOSFETs at deep-cryogenic temperatures

TY Yang, A Ruffino, J Michniewicz… - IEEE Electron …, 2020 - ieeexplore.ieee.org
In this letter, we characterize the electrical properties of commercial bulk 40-nm MOSFETs at
room and deep cryogenic temperatures, with a focus on quantum information processing …

Fast gate-based readout of silicon quantum dots using Josephson parametric amplification

S Schaal, I Ahmed, JA Haigh, L Hutin, B Bertrand… - Physical review …, 2020 - APS
Spins in silicon quantum devices are promising candidates for large-scale quantum
computing. Gate-based sensing of spin qubits offers a compact and scalable readout with …