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Innovation. The project focuses on detecting radioactive contaminants in liquids. The postdoctoral researcher will participate in the production of materials and contribute to the development of dedicated
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, and optimization of various optical devices on chalcogenide materials for frequency conversion in the mid-infrared (2-20 µm) as well as for the detection of molecules by evanescent waves. 2) Improvement
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the detection of mixing state and water content of aerosol. This project builds on four doctoral theses previously conducted at LOA that established the basis for parameterizing aerosol composition
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candidate will join the Magneto-optics team at the Laboratoire National des Champs Magnétiques Intenses in Toulouse (LNCMI-T). He/she will develop the instrumentation to observe for the first time traveling
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) and high mass (>100 GeV). More details about the team in https://www.cppm.in2p3.fr/web/en/research/astroparticles/index.html#Dar… The candidate will be involved in all experimental aspects, from
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on extending methods for detecting the pose of an object (possibly occluded, even if only partially) held by a person to 360-degree robot vision, in line with mesh detection and biomechanical variables
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, using the ModLoc approach developed by the group (Nature Photonics, 2021). A key aspect of the project will be the implementation of an original detection strategy based on oblique plane re-imaging
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with physical chemistry and biology. The research will be conducted within the Mesoscopic Physics team at the Solid State Physics Laboratory (CNRS-UMR 8502). Where to apply Website https://emploi.cnrs.fr
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out within the PICMIC group at IP2I in Lyon, under a pre-maturity grant obtained following a patent awarded to Professor I. Laktineh. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR5822
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candidate will be part of the Glass Surface and Interfaces laboratory The position will contribute in particular to various aspects: • participation in the implementation of an experimental device to observe