115 citations
- University of OxfordGB3 papers
- ARC Centre of Excellence in Future Low-Energy Electronics TechnologiesAU1 paper
- Australian Research CouncilAU1 paper
- Boehringer Ingelheim (China)CN1 paper
- Boehringer Ingelheim (Egypt)EG1 paper
- Boehringer Ingelheim (Germany)DE1 paper
- Canadian Institute for Advanced ResearchCA1 paper
- Centre for Quantum Computation and Communication TechnologyAU1 paper
- Delft University of TechnologyNL1 paper
- ETH ZurichCH1 paper
- Ferdinand-Braun-InstitutDE1 paper
- Forschungszentrum JülichDE1 paper
4 papers · 1 filter
Polarimetry With Spins in the Solid State
Lorenzo Peri, Felix-Ekkehard von Horstig, Sylvain Barraud +3
The ability for optically active media to rotate the polarization of light is the basis of polarimetry, an illustrious technique responsible for many breakthroughs in fields as var…
Radiofrequency cascade readout of coupled spin qubits
Jacob F. Chittock-Wood, Ross C. C. Leon, Michael A. Fogarty +12
Silicon spin qubits based on metal-oxide-semiconductor (MOS) technology are compatible with semiconductor manufacturing and offer a route to scalable quantum processing. However, s…
Method for efficient large-scale cryogenic characterization of CMOS technologies
Jonathan Eastoe, Grayson M. Noah, Debargha Dutta +3
Semiconductor integrated circuits operated at cryogenic temperature will play an essential role in quantum computing architectures. These can offer equivalent or superior performan…
Roadmap on quantum nanotechnologies
Arne Laucht, Frank Hohls, Niels Ubbelohde +26
Quantum phenomena are typically observable at length and time scales smaller than those of our everyday experience, often involving individual particles or excitations. The past fe…