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, the research involves participation in the design of quantum devices with our collaborators within the QLSI2 european consortium, optimization of spin readout at large scale, development of automatic control
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phenomena at stake and the accurate prediction of such complex multi-phase, multi-physics system is then necessary to optimize the system parameters entirely. The first step consists in designing and
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includes both theoretical and experimental components. This fundamental research aims to open new perspectives on various topics: optimizing the stability of micro-mechanical systems, controlling the energy
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** Deployment and optimization of the PFAS analytical toolbox: targeted analyses (LC-MSMS, GC-MSMS), total oxidizable precursor assay (TOPFAS), and non-target screening (NTS, LC-HRMS Orbitrap). Intercomparison
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to explore systems in which light (near-infrared) and acoustic phonons (20–300 GHz) can be confined simultaneously. Numerical simulation and optimization of acoustic and optical resonators Design and
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scientists to correlate optical observables with atomic-scale domain configurations and switching mechanisms. • Maintain and optimize cryogenic optical instruments and participate in the fabrication of high
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skin obtained by self-assembly approach). Participate in the development and optimization of experimental protocols. Implement calibrated photodynamic therapy protocols to induce tissue remodeling
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experts, and contribute to innovative advancements in nanotechnology. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR9001-MARTCH-003/Candidater.aspx Requirements Research
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-generation materials. To enable their industrial use, technologies enabling large-scale, low-cost production of NPs with optimized characteristics are essential. For this, FSP (flame spray pyrolysis) systems
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of new isotopes into protein NMR; and the optimal implementation of intermolecular polarization transfer schemes. S/he will also produce samples following well-established protocols, mainly based on cell