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nanostructures. You will fabricate your own samples in the clean room (thin-film deposition, electron-beam and photolithography, and SEM/FIB-based 3D nanostructuring) and probe their static and dynamic response
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beam (FIB) imaging - can be combined with AI to reconstruct nanoscale chip structures and infer functional behaviour from physical layouts. The project addresses the challenge of extracting reliable
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selection criteria Hands-on experience with one or more advanced characterization techniques such as SEM, EBSD, FIB, and TEM Prior knowledge/experience in hydrogen embrittlement A record of peer-reviewed
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(PEM), and focused ion beam (FIB) imaging - can be combined with AI to reconstruct nanoscale chip structures and infer functional behaviour from physical layouts. The project addresses the challenge
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techniques such as SEM, EBSD, FIB, and TEM Prior knowledge/experience in hydrogen embrittlement A record of peer-reviewed publications in relevant scientific journals and/or conference presentations Personal
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. All ÀPT samples will be shaped into tips using FIB-SEM. - Preparation of biological samples for atomic probe tomography - Develop a reproducible and well-controlled procedure for depositing a metallic
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specially developed, AI-based software that enables 3D reconstructions of element distribution Complementary analysis using other advanced techniques such as SIMS, Raman, FIB-SEM, µ-CT, etc. Compilation
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for Electron Microscopy (UCEM) providing local training and access to state-of-the-art cryogenic electron microscopy facilities, including cryo-focused ion beam (FIB) milling. Our team is well-funded and has
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in microscopic and spectroscopic characterization techniques (FTIR, UV-vis, EA, TGA, NMR, SEM, TEM, FIB, etc.). Experience in vitro experiments and biochemistry Excellent communication and writing