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large polarization, high thermal stability, and CMOS compatibility, opening the way to their integration in future III-nitride electronic and memory platforms. The project involves advanced epitaxy, in
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computer clusters and french HPC time. COSMOS-Web is an international team of >100 permanent researchers, post-docs, PhD students, mainly in the US and Europe. The successful candidate will be in contact
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Additional Information Eligibility criteria -PhD in atomic and molecular physics, chemical physics, or quantum chemistry. -Strong experience in numerical methods, electronic structure theory, and/or time
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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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the synthesis of the nanowires and their assembly into networks (by soft chemistry), while the synthesis of the matrix (CVD deposition) will mainly be carried out by a PhD student already recruited
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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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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
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joining us can contribute to this effort, for example by applying GDL to novel signatures not yet explored in existing studies (electrons or tracks produced far away from the centre of the detector), by
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. The first step will be to work with the company COMAT to apply electrostatic probe measurement techniques to determine the electron and ion properties of the discharge from the pulsed Magneto-Plasma-Dynamic
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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