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Atomic Force Microscopy (AFM) and AFM-based force spectroscopy. Research expertise in optical and confocal microscopy. Starting date: 1 July 2026. The position is for up to two years. The Department
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. The successful candidate will use biochemical, biophysical, and optical approaches, including advanced fluorescence microscopy (confocal, TIRF, single-molecule imaging), to dissect the molecular machinery
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the functional properties of novel ferroic material systems and correlate their nanoscale ferroelectric, ferroelastic, optical, and electrical responses with structure and environment, with relevance
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, and benchmarking experiments Support of user experiments, commissioning and in-house research at MID Data analysis and publication of scientific results Requirements PhD degree in physics or a related
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, and power electronics. The team develops a wide range of materials (III-nitrides, arsenides, selenides, tellurides, oxides) and benefits from advanced growth systems, extensive electrical and optical
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Science. Explore new possibilities in the study of 2D and 3D magnetic microstructures using a mix of static and dynamic magnetometric methods, as well as advanced static and dynamic magneto-optical domain
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microscopy, optical interferometry, vacuum technology, finite element method simulations will be involved. Applicants should hold a PhD in Physics, Nano-science, Engineering or similar, experience with optics
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and synchrotron-based experiments to study the dynamics of light-induced phase transitions on atomic and nanoscopic length-scales driven by optical and phononic excitation. The focus will be
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microscope, single molecule TIRF microscopy and analysis of RNA-protein interactions by techniques including FRET. Length of advert - 2 weeks About you You will hold a high‑quality first degree and PhD in
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properties of vdW materials, from macroscopic crystals to monolayers, using state-of-the-art optical tools. We will focus on transition-metal dichalcogenides (TMDCs) and perform a comprehensive study of how