International audienceElectron flying qubits are envisioned as potential information link within a quantum computer, but also promise -- alike photonic approaches -- a self-standing quantum processing unit. In contrast to its photonic counterpart, electron-quantum-optics implementations are subject to Coulomb interaction, which provide a direct route to entangle the orbital or spin degree of freedom. However, the controlled interaction of flying electrons at the single particle level has not yet been established experimentally. Here we report antibunching of a pair of single electrons that is synchronously shuttled through a circuit of coupled quantum rails by means of a surface acoustic wave. The in-flight partitioning process exhibits a r...
We consider a scheme for on-demand teleportation of a dual-rail electron qubit state, based on singl...
none5In this work we present a simulation of the coherent evolution of electrons in two coupled quan...
The quantum coherence of electronic quasiparticles underpins many of the emerging transport properti...
International audienceElectron flying qubits are envisioned as potential information link within a q...
Total 25 pages. 12 pages main text, 4 figures, 5 pages supplementary materialInternational audienceE...
In the last 25 years there were several reports on quantum-optics-like experiments that were perform...
Besides their massive use in telecommunication industry, surface acoustic waves (SAWs) are finding m...
Surface acoustic waves (SAWs) strongly modulate the shallow electric potential in piezoelectric mate...
International audienceSurface acoustic waves (SAWs) strongly modulate the shallow electric potential...
In this work we study the coherent propagation of electrons in quantum wires driven by surface acous...
Precise control over interactions between ballistic electrons will enable us to exploit Coulomb inte...
We propose and numerically simulate a semiconductor device based on coupled quantum wires, suitable ...
The non-linear response of a beam splitter to the coincident arrival of interacting particles enable...
We propose a method of generating fully entangled electron spin pairs using an open static quantum d...
We study by means of time-dependent numerical simulations the quantum entanglement stemming from the...
We consider a scheme for on-demand teleportation of a dual-rail electron qubit state, based on singl...
none5In this work we present a simulation of the coherent evolution of electrons in two coupled quan...
The quantum coherence of electronic quasiparticles underpins many of the emerging transport properti...
International audienceElectron flying qubits are envisioned as potential information link within a q...
Total 25 pages. 12 pages main text, 4 figures, 5 pages supplementary materialInternational audienceE...
In the last 25 years there were several reports on quantum-optics-like experiments that were perform...
Besides their massive use in telecommunication industry, surface acoustic waves (SAWs) are finding m...
Surface acoustic waves (SAWs) strongly modulate the shallow electric potential in piezoelectric mate...
International audienceSurface acoustic waves (SAWs) strongly modulate the shallow electric potential...
In this work we study the coherent propagation of electrons in quantum wires driven by surface acous...
Precise control over interactions between ballistic electrons will enable us to exploit Coulomb inte...
We propose and numerically simulate a semiconductor device based on coupled quantum wires, suitable ...
The non-linear response of a beam splitter to the coincident arrival of interacting particles enable...
We propose a method of generating fully entangled electron spin pairs using an open static quantum d...
We study by means of time-dependent numerical simulations the quantum entanglement stemming from the...
We consider a scheme for on-demand teleportation of a dual-rail electron qubit state, based on singl...
none5In this work we present a simulation of the coherent evolution of electrons in two coupled quan...
The quantum coherence of electronic quasiparticles underpins many of the emerging transport properti...