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technologies. The institute places particular emphasis on micro- and nanotechnologies, including nanostructures and nanoelectronics, microelectronics, microwave engineering, and microsystems. PhLAM is a Joint
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behavior in D/B interaction. To circumvent this issue, the PhD candidate will fabricate B films on W and WOx substrates using a recently purchase electron-beam evaporator. Such source will allow to produce
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to photonic structures, in particular plasmonic structures, whose resonances are confined within a few nanometres. The equipment and experimental setups for quantum optics experiments (lasers, cryostats
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structural modifications like surface reconstructions, phase transitions, and the formation of Magnéli phases from reducible oxides. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR7504
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project, will enable systematic studies of nuclear decay in low-electron systems (H-, He-, and Li- ions), where simplified atomic structures allow for the emergence of rare decay channels such as orbital
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modified under the influence of an external electric field (E). Antiferroelectric materials, on the other hand, have an antipolar dipolar structure corresponding to a net polarization of zero and undergo a
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width: discrete frequency comb ver-sus continuous spectrum, and the presence or absence of spectral dispersion. Added to this are kinetic effects (electron trapping, plasma wave broadening) and geometric
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, the progressive degradation of the core can lead to the formation of a complex material called corium, resulting from interactions between the nuclear fuel, structural materials, and, in certain scenarios
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at the interface of neuroscience, neuromorphic computing, and embedded electronics. The project builds upon the complementary expertise of four internationally recognized research institutions
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. The MATICE group investigates the evolution of the physicochemical and structural properties of materials used in the nuclear industry under extreme conditions, particularly high temperatures and irradiation