Quantum computing is a field of growing interest, especially in Grenoble with an exceptional concentration of both research and industrials groups implicated in this field. The global aim is to develop a new kind of nano-processors, based on quantum properties. Its building brick is a two-level quantum system, in our case the spin of electrons trapped in a quantum dot.In this quest for a large-scale architecture, networked quantum computers offer a natural path towards scalability. Indeed, separating the computational task among quantum core units interconnected via a coherent quantum mediator would greatly simplify the addressability challenges. These quantum links should be able to coherently couple arbitrary nodes on fast timescales, in ...
We investigate numerically the charge, spin, and entanglement dynamics of two electrons confined in ...
Quantum computers have gained great attention in the recent past, with their promise for solving exc...
We propose a scheme for deterministic generation and long-term stabilization of entanglement between...
A global effort is pursued to realise a quantum computer. Such a dispositive will allow to implement...
L’informatique quantique est un domaine d’intérêt croissant, notamment à Grenoble avec une concentra...
Recent technological advances hint at the future possibility to use single electron spins as carrier...
The electron spin is a natural two-level system that allows a qubit to be encoded. When localized in...
Un effort mondial existe actuellement dans le but de réaliser un ordinateur quantique. Un tel dispos...
In the last 25 years there were several reports on quantum-optics-like experiments that were perform...
In this thesis we described a series of experimental works, which have been realized in the context ...
The physical implementation of quantum information processing is one of the major challenges of curr...
Besides their massive use in telecommunication industry, surface acoustic waves (SAWs) are finding m...
Motion of electrons can influence their spins through a fundamental effect called spin–orbit interac...
Raw data on which the figures in the publication 'Coherent shuttling of a hole spin qubit through mu...
We investigate numerically the charge, spin, and entanglement dynamics of two electrons confined in ...
Quantum computers have gained great attention in the recent past, with their promise for solving exc...
We propose a scheme for deterministic generation and long-term stabilization of entanglement between...
A global effort is pursued to realise a quantum computer. Such a dispositive will allow to implement...
L’informatique quantique est un domaine d’intérêt croissant, notamment à Grenoble avec une concentra...
Recent technological advances hint at the future possibility to use single electron spins as carrier...
The electron spin is a natural two-level system that allows a qubit to be encoded. When localized in...
Un effort mondial existe actuellement dans le but de réaliser un ordinateur quantique. Un tel dispos...
In the last 25 years there were several reports on quantum-optics-like experiments that were perform...
In this thesis we described a series of experimental works, which have been realized in the context ...
The physical implementation of quantum information processing is one of the major challenges of curr...
Besides their massive use in telecommunication industry, surface acoustic waves (SAWs) are finding m...
Motion of electrons can influence their spins through a fundamental effect called spin–orbit interac...
Raw data on which the figures in the publication 'Coherent shuttling of a hole spin qubit through mu...
We investigate numerically the charge, spin, and entanglement dynamics of two electrons confined in ...
Quantum computers have gained great attention in the recent past, with their promise for solving exc...
We propose a scheme for deterministic generation and long-term stabilization of entanglement between...