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dynamics simulations to understand the growth mechanisms of thin films deposited by magnetron sputtering, with or without ion beam assistance (IBAS), particularly for metallic materials (Ag) and oxides (ZnO
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of the laboratory itself. The ASSD team (Astroparticle Solid State Detectors) develops an approach based on exploiting the properties of materials studied within the group to design innovative detectors
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sciences, hybrid materials, electrochemistry, photochemistry, methodological developments in analytical chemistry, and molecular modeling. Where to apply Website https://emploi.cnrs.fr/Offres/CDD/UMR6230
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challenges in metalens development is achieving broadband color imaging due to chromatic aberration. Achromatic metalenses address this issue by simultaneously focusing red, green, and blue light, enabling
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ultrafast imaging, compatible with the observation of living biological systems, while remaining applicable to the study of nanostructures and functional materials. The recruited researcher will contribute
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platform for the study of artificial quantum materials based on large semiconductor quantum dot lattices. By combining extended one-dimensional and bilinear arrays with high-sensitivity RF admittance
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. Fluorescence lifetime is a powerful probe of molecular interactions, chemical environment and local medium properties, both in living cells and in nanostructures or functional materials. The project therefore
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device geometries, materials and control parameters. The third objective will be to use this code to simulate and train skyrmion-based neuromorphic networks, and to contribute to their experimental
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(Instrumentation and Photonics Processes) team, which specializes in research on light-matter interactions in micro- and nanostructured media. The team's work focuses on extracting information or modifying materials