Non adiabatic quantum dynamics in novel optical superlattices
"The interdisciplinary boundary between the fields of quantum information science, condensed matter, and atomic physics is at the heart of the new field of ""quantum engineering"". One of the most important tools in this domain is...
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Información proyecto NODOS
Líder del proyecto
AARHUS UNIVERSITET
No se ha especificado una descripción o un objeto social para esta compañía.
TRL
4-5
Presupuesto del proyecto
221K€
Fecha límite de participación
Sin fecha límite de participación.
Descripción del proyecto
"The interdisciplinary boundary between the fields of quantum information science, condensed matter, and atomic physics is at the heart of the new field of ""quantum engineering"". One of the most important tools in this domain is ultracold atoms in optical lattices which are an ideal for testing condensed matter models and realising scalable quantum computation.
For pratical implementation of quantum technology the challenge lies in realising the necessary dynamics with sufficient speed, sensitivity and robustness. This project will combine cutting-edge technologies of high resolution imaging and non destructive probing with an innovative realisation of super lattices to realise novel dynamics on the scale or microscopic, mesoscopic and macroscopic atom numbers. In addititon, I will use my extensive experience in the field of rapid, non-adiabatic processes to speed-up these processes allowing the step from proof of principle to the extremely high fidelities demanded for practical implementations."