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range in terms of accuracy and stability. The postdoctoral researcher will work with the team to develop, characterise and implement the various improvements until the instrument is back in operation and
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3D optical diagnostic tools. The activities would include experimental fluid dynamics, 3D PTV setting and laser handling, data post-processing, to improve the measurement and understanding of small
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characterization of C and SiC fibers - Training on bench use (in particular heating techniques by Joule effect, laser diffraction, infrared imaging, pyrometry, preparation of micrometric samples, ...) - Technical
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synthesised in situ using a state-of-the-art pulsed laser deposition system. Key characterisations include X-ray diffraction for structural properties and temperature-dependent magneto-optical properties
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the supervision of PhD or Master students. The recruited person will exploit the existing test benches (Beta source and infrared laser) developed for the first EICROC protype (EICROC0, 4x4 channels) to characterize
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. Avice). - Mineral separation (crushing, sieving) - Chemical purification by acid digestion (optional) - Assembling and testing of vacuum experiments - Noble gas static mass spectrometry (crushing, laser
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device fabrication techniques, including sputtering, evaporation, electron-beam lithography, optical and laser lithography, reactive-ion etching and plasma etching - Physical characterization techniques
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techniques (3D printing, photopolymerization, laser ablation, molding). - Knowledge of advanced imaging techniques (confocal microscopy, fluorescence microscopy etc.) will be highly appreciated. Website
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existing hydrodynamic code to simulate experiments from the literature, implement and improve multi-phase behaviour laws to optimise their predictive capabilities, and carry out new laser shock experiments
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-derived substrates, focusing on yield, selectivity, and stability. Investigation of reaction mechanisms and charge transfer processes to identify scientific bottlenecks and propose strategies