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-on experience with growth reactors and/or clean-room environment. - Knowledge of structural and/or optical characterization of semiconductors. - Knowledge of numerical simulations will be useful though not
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least one or two of the following core areas: • Experimental spectroscopy or optics. • THz spectroscopy of materials in a cryogenic environment. • Electromagnetism or wave propagation simulation and
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activities will involve various advanced high-resolution mass spectrometers (Orbitrap, Vocus, …), optical techniques (fluorescence, optical tweezers,…), aerosol flow tubes and an atmospheric simulation chamber
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to develop new functional materials. It will use an approach that combines experimentation and simulation. This project aims to address societal challenges related to clean energy production. Tasks: Take
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cross-validation and simulation-based checks; document performance and limitations. * Software engineering: contribute maintainable code to laMEG; add unit/integration tests and continuous integration
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); - Experience in electrical measurements on nanodevices and 2D materials; - Knowledge of radiation–matter interactions; - Solid background in elasticity, strain engineering, numerical simulation tools (COMSOL