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A predicting platform for designing semiconductor quantum devices

Projektbeschreibung

Neue Computermodelle zur Verwirklichung von Halbleiter-Quantenbauelementen

Das ehrgeizige Ziel des im Rahmen der Marie-Skłodowska-Curie-Maßnahmen finanzierten Projekts PRESQUE besteht darin, ein Computermodell zu entwickeln, das die Betriebsmodi zukünftiger Quantentransistoren auf Siliziumbasis vorhersagt. In diesem Rahmen werden Algorithmen maschinellen Lernens eingesetzt werden, um die Zeit weiter zu senken, die benötigt wird, um Transistordesigns zu optimieren. Den Erwartungen zufolge wird das Projekt einen unschätzbaren Beitrag zu den kritischen Grundlagentechnologien der EU leisten und die Quantendigitalisierung fördern. Die Investitionen in Forschung und Entwicklung und in die Industrie in Europa zielen zurzeit intensiv auf Quantentechnologien und die künstliche Intelligenz ab, da diese Innovationen das Potenzial haben, erhebliche Veränderungen in der digitalen Wirtschaft und Fertigung zu bewirken.

Ziel

Quantum technologies and Artificial Intelligence are currently leading R&D and industrial investments of Europe due to their potential to bring large transformations in the digital economy and manufacturing of EU. This project will be based in the research and technology ecosystem of Grenoble, in France, hosted in a Joint Research Unit of Université Grenoble Alpes and CEA. The aim of the project will be to develop a computer-assisted model able to predict the modes of operation of a silicon quantum transistor, giving access to accurate predictions that can decrease the costs involved in designing a quantum circuit. Machine Learning algorithms will be employed for further decreasing the time it takes to optimize the design in a fraction of the original. This project is expected to be an invaluable addition to the enabling technologies for the EU research and innovation and its goals for 'quantum digitization'.
The work will be undertaken by Dr. Eleni Chatzikyriakou, with an interdisciplinary background and expertise in the development of computational methods for electron device operation and will be supervised by Dr. Xavier Waintal, that has twenty years of experience in computational studies of various physical phenomena in the quantum regime, and is the leading coordinator of the open source software for quantum transport Kwant.
The fellow will be part of a highly specialized group in quantum technologies and will have the opportunity to significantly broaden her knowledge in both quantum technology and Machine Learning through the training and implementation of the action. It is therefore expected that, together with the training in leading and management skills, by the end of the fellowship, she will be in a position to take on leading positions and coordinate interdisciplinary actions by taking advantage of her own and the new networking opportunities that will arise in the fields of (Opto)Electronic Engineering, Computer Science and Physics.

Koordinator

UNIVERSITE GRENOBLE ALPES
Netto-EU-Beitrag
€ 184 707,84
Adresse
621 AVENUE CENTRALE
38058 Grenoble
Frankreich

Auf der Karte ansehen

Region
Auvergne-Rhône-Alpes Rhône-Alpes Isère
Aktivitätstyp
Higher or Secondary Education Establishments
Links
Gesamtkosten
€ 184 707,84