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processes with the overarching goal of improving quality, efficiency, and reducing our environmental footprint. The Production Technology research facility has state-of-the-art equipment, including laser beam
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Centre de Mise en Forme des Matériaux (CEMEF) | Sophia Antipolis, Provence Alpes Cote d Azur | France | 2 months ago
context of the project: The Laser Powder Bed Fusion (LPBF) process is currently at the peak of its industrial development, thanks to its ability to produce complex geometries. However, a number of known
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) develops advanced optical technologies, including imaging, spectroscopy, and laser ablation methods. Our goal is to bridge these cutting-edge laser technologies with clinical practice, developing solutions
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. The position requires operation of a 40-TW Ti:Sapphire system for laser-plasma experiments and transfer/moving of the system in the current TPW high-bay. The position requires active involvement in
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imaging in molecular systems, as demonstrated by scientific publications in the field. Required skills include operation and alignment of laser instrumentation, and programming experience in e.g. MATLAB
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the use of terrestrial laser scanning. The research program also includes teaching collaboration on courses related to research activities, both in terms of classroom teaching and exercises, as
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the MRL’s core facilities for electron microscopy in addition to other cores of shared instrumentation for scanning probe microscopy, laser and optical spectroscopy, surface, thermal and physical properties
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at cryogenic temperatures. Perform spectroscopy and optical imaging of quantum emitters. Perform advanced coherent excitation of individual emitters with picosecond laser pulses. Perform quantum-optical
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optimization. TalTech is equipped with up-to-date laboratories for powder metallurgy, additive manufacturing, laser processing, and materials testing. These facilities support a wide range of research activities
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applications as soon as possible. Required Field(s): · Advanced fabrication process of emitting devices, mainly laser diodes . · Materials: wide-band gap nanostructure devices (mainly oxides, III