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generation of laser sources. These devices are based on a physical separation between electrical addressing and optical emission, enabling the design of addressable Tamm lasers with high potential
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Microscope (SEM). - Perform simulations of tensile tests and nanoindentation in materials produced via Laser Powder Bed Fusion additive manufacturing. - Compare the resulting dislocation microstructures with
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an optoelectronic process for 980 nm high-power diamond laser diodes. In this context, the role of the LSPM is to provide polycrystalline diamond layers 2 to 4 inches in diameter with optimized mechanical
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device fabrication techniques, including sputtering, evaporation, electron-beam lithography, optical and laser lithography, reactive-ion etching and plasma etching - Physical characterization techniques
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19 Jan 2026 Job Information Organisation/Company CNRS Department Service de physique de l'état condensé Research Field Engineering Chemistry Physics Researcher Profile First Stage Researcher (R1
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19 Jan 2026 Job Information Organisation/Company CNRS Department Laboratoire des Composites ThermoStructuraux Research Field Chemistry Physics Technology Researcher Profile First Stage Researcher