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, which brings together 4 partners: LTM/CNRS, pheliqs/CEA, Institut Néel/CNRS and CREAH/CNRS. The aim of the project is to manufacture betavoltaic sources using a new core-shell wire architecture
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, including the study of side-channel attacks and the development of effective countermeasures. LabSoC also designs solutions to secure communications, external memory, and microelectronic architectures. In
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conditions (subject of the PhD started in 2024 in the SFAM team) ii) the controlled incorporation, on the backbone or in the nanopores of these crystalline architectures, of molecular catalysts based on nickel
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compositional reasoning. The core research thrusts of this position are: • Structured, neurosymbolic models: The research will investigate model architectures that are not learned from a blank slate. Instead
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networks (5G and WiFi 7 and their evolutions) in terms of architecture, protocols, and optimization. These networks benefit from new technologies and approaches, such as virtualization and AI, to make them
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productions, and finally a transversal axis around transitions. A wide range of research disciplines can therefore be funded through Bienvenüe+ such as: Anthropology, Architecture, Arts, Astronomy, Biological
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on strategic and international projects, and to play a key role in shaping the emerging field of quantum communications and neuromorphic computing. • Opportunity to supervise PhD students and interns. • Various