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(Raman, fluorescence), electron-based microscopy, X-ray-based imaging, diffraction and spectroscopy, micro-/millifluidic device design and operation, image/video analysis, bacteria cultivation and
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DTU Physics and DTU Construct. Our group is a global leader in the field of metals. We invented the synchrotron-based imaging technique Dark-Field X-ray Microscopy (DFXM) and previously 3D X-ray
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of dislocation stress fields (in collaboration with CEA Saclay). - Program the diffraction procedures to generate images comparable to Electron Channeling Contrast Imaging (ECCI) obtained using a Scanning Electron
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scattering, neutron scattering, photoelectron spectroscopy, etc. * Experience with lab-standard sample characterization techniques and related equipment (transport measurements, single crystal diffraction
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collaborative programme bringing together a team of leading experts in advanced electron microscopy imaging, first-principles modelling, metal halide semiconductor thin-film and device fabrication, and
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. Advanced materials design and characterization will be pursued through various strategies. The candidate should have extensive experience in fabricating and testing prototype batteries, glove box operation
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dynamics, it is therefore necessary to correct aberrations over time to restore a diffraction-limited illumination beam. This will be achieved using an adaptive optics (AO) loop specially designed for in
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at the forefront of nano-optics and nanophotonics within the Vectorial Nano-Imaging research unit at Istituto Italiano di Tecnologia, led by Dr. Antonio Ambrosio. The research activity focuses on the investigation
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, with a clear link to X-ray based analytical methods, especially to X-ray diffraction and if possible, X-ray imaging. We expect the candidate's enthusiasm for interdisciplinary work related to Space
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and aerosol characterisation, including: -Laser diffraction -Next Generation Impactor (NGI) -Liquid chromatography-based analyses Analyse and interpret experimental data to inform iterative formulation