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-month European LACE project. The LACE (Lacer CEramics) project aims to the development of technologies to design the first technological bricks for High Energy Lasers (HEL). In particular, the LACE
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on this project, you will: Design and Model : Develop novel concepts for integrating photonic systems (e.g., laser-based, integrated optic components) with advanced microwave scattering/diagnostic
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for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR7341-CATCON-001/Default.aspx Work Location(s) Number of offers available1Company/InstituteLaboratoire Lasers, Plasmas et Procédés
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the supervision of PhD or Master students. The recruited person will exploit the existing test benches (Beta source and infrared laser) developed for the first EICROC protype (EICROC0, 4x4 channels) to characterize
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? Horizon 2020 Is the Job related to staff position within a Research Infrastructure? No Offer Description As part of the EU Recreate project, the recruited person will be required to deploy the laser shock
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measurement techniques such as particle image velocimetry (PIV), laser Doppler velocimetry (LDV), and hot- or cold-wire anemometry is highly desirable. Computational Fluid Mechanics position: - PhD in
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electron spectroscopy – this position would assist with both projects (Jaideep Singh). 2) Laser spectroscopy of short-lived radioactive molecules – the goal of this research is to develop and apply new
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mainly focused on applied and fundamental research at the borderline of high-power lasers and particle accelerators. It maintains close collaborations with the Helmholtz Centers DESY in Hamburg, and HZDR
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Appointment Term: Two years Appointment Start Date: Around end of summer 2025 Group or Departmental Website: https://digonnetgroup.stanford.edu/ (link is external) How to Submit Application Materials: silurian
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DTU Tenure Track Researcher in Low-Noise Supercontinuum Lasers and Supercontinuum Laser based Opt...
If you aim at scientific excellence and want to establish a career as a scientist within fiber lasers and supercontinum sources and their high-level applications within optical coherence tomography