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field of topotactic reduction of nickelate thin films, a novel research direction in condensed matter physics. It will be fully funded within the framework of the ANR TAME project. The project concerns
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multispectral and hyperspectral UVvisible imaging and synchrotron X-ray analysis to map photoluminescent signatures, analyze elemental composition (heavy metals, rare earth elements, etc.) and the chemical
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physics and biology. The institute also benefits from state-of-the-art core facilities, particularly in microscopy (Microscopy Rennes Imaging Center, MRic, https://microscopie.univ-rennes1.fr/ ). Rennes is
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processes, plasma polymerization, thin-film deposition, surface functionalization, or materials characterization will be highly valued. Experience with magnetic nanoparticles and techniques such as XPS, FTIR
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. The project includes measurements of microstructured thin-film YIG devices. In particular, the researcher will perform microwave measurements in a dilution refrigerator to characterize magnons in
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on the realization, characterization and measurement of the structural and transport properties of superconducting devices made entirely out of silicon. Superconducting Si thin layers will be realized by Gas Immersion
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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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characterization of new thermometry concepts for ultra-low-temperature applications; • the implementation, optimization, and operation of thin film deposition systems; • thin film deposition and characterization
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activities will consist in: 1. developing steganalysis methods based on incompatibility search (i.e. study the fact that elements of the image are not compatible with natural images). 2. security analysis
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systems will be highly appreciated. The candidate should also have knowledge of microfluidics and/or organ-on-chip technologies, as well as hands-on experience with at least one thin-film deposition