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, as well as relatively low efficiency and the need for external laser excitation, which prevents miniaturization and increases energy demand. Project target is to develop hybrid SPS based on III-N/hBN
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, MultiFab, TRI-Genotoul). The project is embedded in a dynamic regional and national collaborative ecosystem focused on organ-on-chip technologies and personalized medicine. Where to apply Website https
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mechanicsEducation LevelMaster Degree or equivalent Skills/Qualifications Optics, electronics, lasers. LanguagesENGLISHLevelGood Research FieldPhysics » Optics Additional Information Work Location(s) Number of offers
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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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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
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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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) microscopy, FLIM, STED, lattice lightsheet microscopy, fluorescence correlation spectroscopy (FCS), image processing and analysis and spectral imaging. More information about the ABIF can be found at: http
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laser-plasma interactions and the physics of plasma mirror operation. The Post Doctoral Scholar will take a leading role in this work and running the Scarlet Laser Facility. This is a term position and is
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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