Electron and nuclear spins associated with point defects in insulators are promising systems for solid-state quantum technology. The electron spin is usually used for readout and addressing, and nuclear spins are used as exquisite quantum bits and memor
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
The transfer of information between different physical forms - for example processing entities and m...
Quantum control of individual spins in condensed-matter devices is an emerging field with a wide ran...
International audienceQuantum control of individual spins in condensed-matter devices is an emerging...
Individually addressed Er3+ ions in solid-state hosts are promising resources for quantum repeaters,...
Robust measurement of single quantum bits plays a key role in the realization of quantum computation...
Superposition and entanglement are uniquely quantum phenomena. Superposition incorporates a phase th...
Besides an electric charge, electrons also have a tiny magnetic moment, called spin. In a magnetic f...
Spin is a quantum mechanical property that describes the magnetic orientation of elementary and comp...
Coupled electron-nuclear spins are promising physical systems for quantum in-formation processing: B...
The interaction between electron and nuclear spins is the ultimate limit to using quantum dots as fu...
The transfer of information between different physical forms is a central theme in communication and...
The mesoscopic spin system formed by the 104 − 106 nuclear spins in a semiconductor quantum dot offe...
Single electron spins coupled to multiple nuclear spins provide promising multi-qubit registers for ...
Spins of impurities in solids provide a unique architecture to realize quantum technologies. A quant...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
The transfer of information between different physical forms - for example processing entities and m...
Quantum control of individual spins in condensed-matter devices is an emerging field with a wide ran...
International audienceQuantum control of individual spins in condensed-matter devices is an emerging...
Individually addressed Er3+ ions in solid-state hosts are promising resources for quantum repeaters,...
Robust measurement of single quantum bits plays a key role in the realization of quantum computation...
Superposition and entanglement are uniquely quantum phenomena. Superposition incorporates a phase th...
Besides an electric charge, electrons also have a tiny magnetic moment, called spin. In a magnetic f...
Spin is a quantum mechanical property that describes the magnetic orientation of elementary and comp...
Coupled electron-nuclear spins are promising physical systems for quantum in-formation processing: B...
The interaction between electron and nuclear spins is the ultimate limit to using quantum dots as fu...
The transfer of information between different physical forms is a central theme in communication and...
The mesoscopic spin system formed by the 104 − 106 nuclear spins in a semiconductor quantum dot offe...
Single electron spins coupled to multiple nuclear spins provide promising multi-qubit registers for ...
Spins of impurities in solids provide a unique architecture to realize quantum technologies. A quant...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
The transfer of information between different physical forms - for example processing entities and m...
Quantum control of individual spins in condensed-matter devices is an emerging field with a wide ran...