MultiQubit is built on the concept of a novel type of quantum dots — crystal-phase quantum dots — discovered and developed by the PI. Crystal-phase quantum dots have a unique advantage — growth control with the ultimate accuracy o...
ver más
¿Tienes un proyecto y buscas un partner? Gracias a nuestro motor inteligente podemos recomendarte los mejores socios y ponerte en contacto con ellos. Te lo explicamos en este video
Proyectos interesantes
OPHOCS
On chip Photonic Cluster State Generation
200K€
Cerrado
NANOWHYR
Dots-in-NANOWires by near-field illumination: novel single-p...
1M€
Cerrado
SITELiTE
Deterministic coupling between SITE controlled dilute nitri...
194K€
Cerrado
QD-NOMS
Elementary quantum dot networks enabled by on chip nano opto...
2M€
Cerrado
SPANGL4Q
Spin Photon Angular Momentum Transfer for Quantum Enabled Te...
3M€
Cerrado
Fecha límite de participación
Sin fecha límite de participación.
Descripción del proyecto
MultiQubit is built on the concept of a novel type of quantum dots — crystal-phase quantum dots — discovered and developed by the PI. Crystal-phase quantum dots have a unique advantage — growth control with the ultimate accuracy of a single atomic layer. This advantage will break the major limitation in the field of optically-active quantum dots — impossibility to build quantum devices with multiple quantum dots due to lack of the required growth control — and thus unlock their true potential for Quantum Technologies. Based on these, MultiQubit is committed to creating a robust technological platform for making solid-state multi-qubit devices with a photonic interface. This platform shall be a game-changer in Quantum Technologies, allowing to connect quantum computers across the world. In particular, MultiQubit will develop and demonstrate all the steps from the fabrication of basic quantum structures to distributed entanglement between remote nodes of a multi-qubit Quantum Information Network. For the successful realization of these ideas, the PI proposes three key objectives:
1. Explore and demonstrate a novel crystal-phase qubit — the central element of MultiQubit. This qubit is based on crystal-phase quantum dots, which are fully designable and scalable, because their geometry can be controlled with the ultimate accuracy of a single atomic layer during the growth.
2. Build the first designable and scalable multi-qubit quantum register with a photonic interface. This is one of the major components in Quantum Information Networks to be implemented.
3. Design and demonstrate a quantum network of multi-qubit photonic devices. This may be a potential prototype of the forthcoming Quantum Internet.