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simulation work related to laser-plasma acceleration. This project contributes to the development of compact electron beam optics and diagnostics, essential for advancing the applications of plasma
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recognized as a CNRS research unit since 2000), the laboratory was created through the merger of several research teams in computer science and electronics. It currently comprises 160 members, including 81
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of new electronic and structural properties, which will be explored in the context of neuromorphic applications. The successful candidate will be responsible for: • Fabricating heterostructures by pulsed
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cells - Characterisation of mechanical and morphological properties - Electrochemical studies (cycling, ionic/electronic conductivity) - Studies using optical microscopy and SEM - Presentation of results
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of Research Experience1 - 4 Additional Information Eligibility criteria The candidate should hold a PhD degree in one or more of the above-mentioned discipline relevant to the project: device/electronics
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-)electron microscopy. The other aim is to interpret the mass spectra, in particular through the synergistic use of MALDI-FT-ICR and ToF-SIMS, in order to evaluate the limits of the technique in terms
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complexes using X-ray crystallography and/or electron microscopy. In addition, the candidate will develop nucleosome reconstitution methods and genome-wide HSF-DNA binding assays. This project will be
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Offer Description The electronic structure of two-dimensional (2D) materials can be selectively modified by controlling their strain, thereby opening new perspectives in microelectronics. In this context
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://ecotaxa.obs-vlfr.fr/ ) or store and distribute data on the abundance of marine snow particles. The team has a long experience of interactions with engineers and computer scientists, in academia and the private
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of ionic and electronic conductors, electrolytes, and hybrid soft-matter separators for lithium-metal batteries. The main scientific questions involve the relationships between the local scale (nanostructure