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scientists to correlate optical observables with atomic-scale domain configurations and switching mechanisms. • Maintain and optimize cryogenic optical instruments and participate in the fabrication of high
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, Uncertainty, Data • SCOP: Reliability, Communication, Optimization • SyRI: Robotic Systems in Interaction The recruited person will join the SyRI team, working directly with the responsable. Recruitment takes
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Post-doctoral Researcher in Multimodal Foundation Models for Brain Cancer & Neuro-degenerative Disea
images, including Positron Emission Tomography, temporal multi-modal MRI and Histology, which we use for models training and validation. Objectives A key research focus of our group is the optimization
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spectrometry, ... # Supramolecular chemistry You characterize interactions at play in supramolecular complexes You characterize optical and magnetic properties of complexes # Photoreactivity You optimize
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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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skin obtained by self-assembly approach). Participate in the development and optimization of experimental protocols. Implement calibrated photodynamic therapy protocols to induce tissue remodeling
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, so that it can be easily used in practice (fast optimization, embedded decision-making, online updating). 1. Design a lightweight statistical/probabilistic surrogate model, integrating: • an estimation
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PhD degree in Physics, Materials Science, Electrical Engineering, Nanotechnology, or a related field. o Strong hands-on experience in cleanroom micro- and nanofabrication, ideally using Silicon
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optimize the UV micro-photoluminescence setup. Perform optical and cryogenic tests. Develop the software for control of the instruments and data acquisition based on PyModAq, Where to apply E-mail
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? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description “Optimizing the functionality of Fe2P compounds through microstructural control