We propose a method of generating fully entangled electron spin pairs using an open static quantum dot and a moving quantum dot, realized by the propagation of a surface acoustic wave (SAW) along a quasi-one-dimensional channel in a semiconductor heterostructure. In particular, we consider a static dot (SD) loaded with two interacting electrons in a singlet state and demonstrate a mechanism which enables the moving SAW dot to capture and carry along one of the electrons, hence yielding a fully entangled static-flying pair. We also show how with the same mechanism we can load the SD with one or two electrons which are initially carried by a SAW-induced dot. The feasibility of realizing these ideas with existing semiconductor technology is de...
A global effort is pursued to realise a quantum computer. Such a dispositive will allow to implement...
Funder: Cambridge TrustAbstract: The long-distance quantum transfer between electron-spin qubits in ...
We propose a solid-state quantum structure capable of generating the Einstein-Podolsky-Rosen (EPR) e...
Surface acoustic waves (SAWs) can create moving quantum dots in piezoelectric materials. Here we sho...
Surface acoustic waves (SAWs) strongly modulate the shallow electric potential in piezoelectric mate...
We propose a scheme to produce spin entangled states for two interacting electrons. One electron is ...
International audienceSurface acoustic waves (SAWs) strongly modulate the shallow electric potential...
Total 25 pages. 12 pages main text, 4 figures, 5 pages supplementary materialInternational audienceE...
A surface acoustic wave (SAW) can produce a moving potential wave that can trap and drag electrons a...
International audienceWe study the injection mechanism of a single electron from a static quantum do...
The long-distance quantum transfer between electron-spin qubits in semiconductors is important for r...
A theoretical scheme is presented for the entanglement of two-electron spin qubits bound in series w...
Gallium arsenide is piezoelectric, so it is possible to generate coupled mechanical and electrical s...
In this work we study the coherent propagation of electrons in quantum wires driven by surface acous...
In the last 25 years there were several reports on quantum-optics-like experiments that were perform...
A global effort is pursued to realise a quantum computer. Such a dispositive will allow to implement...
Funder: Cambridge TrustAbstract: The long-distance quantum transfer between electron-spin qubits in ...
We propose a solid-state quantum structure capable of generating the Einstein-Podolsky-Rosen (EPR) e...
Surface acoustic waves (SAWs) can create moving quantum dots in piezoelectric materials. Here we sho...
Surface acoustic waves (SAWs) strongly modulate the shallow electric potential in piezoelectric mate...
We propose a scheme to produce spin entangled states for two interacting electrons. One electron is ...
International audienceSurface acoustic waves (SAWs) strongly modulate the shallow electric potential...
Total 25 pages. 12 pages main text, 4 figures, 5 pages supplementary materialInternational audienceE...
A surface acoustic wave (SAW) can produce a moving potential wave that can trap and drag electrons a...
International audienceWe study the injection mechanism of a single electron from a static quantum do...
The long-distance quantum transfer between electron-spin qubits in semiconductors is important for r...
A theoretical scheme is presented for the entanglement of two-electron spin qubits bound in series w...
Gallium arsenide is piezoelectric, so it is possible to generate coupled mechanical and electrical s...
In this work we study the coherent propagation of electrons in quantum wires driven by surface acous...
In the last 25 years there were several reports on quantum-optics-like experiments that were perform...
A global effort is pursued to realise a quantum computer. Such a dispositive will allow to implement...
Funder: Cambridge TrustAbstract: The long-distance quantum transfer between electron-spin qubits in ...
We propose a solid-state quantum structure capable of generating the Einstein-Podolsky-Rosen (EPR) e...