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Field
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project is to overcome these limitations through the design of a flexible, quantum sensing foil based on an atomically-thin two-dimensional (2D) material. Our approach consists in using optically-active
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by sequences of femtosecond laser pulses, using a suite of femtosecond time-resolved magneto-optical spectroscopies, as well as magnetic imaging using a dedicated magnetic force microscope and magnetic
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shaped brain region, implicated in a wide range of functions. The cerebellar cortex, a thin layer of grey matter, is very tightly folded, resulting in a highly convoluted architecture. Its visualisation
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scene, and leveraging that understanding for localization and navigation. A robot builds a picture of its surroundings one lidar scan at a time. Each scan on its own says very little; together
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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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cooperation with FMI, where E-sail was invented, and 4 companies. E-sail is a highly innovative and potentially disruptive propellantless propulsion system. An operational E-sail consists of hair-thin and
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staff of around 120, including 66 permanent staff. It has a strong experimental component, with numerous prototype set-ups supported by both standard equipment and high-tech instrumentation
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, the Laboratory for Neutron Scattering and Imaging LNS, and the Water Electrodynamics Group at TU-Hamburg. The PhD student will conduct experiments on tracer diffusion and electromigration in clays conducted
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between 0 (0 points) and 10 (10 points). - If the Master’s degree includes modules in Solar Cell Physics, Thin-Film Photovoltaic Technologies, and Industrial Photovoltaic Technologies, 2.5 points will be
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the development of the optical strategy and its integration with the electrochemical one. Besides optimizing a sensitive quantitative phase imaging setup for analysis of thin surface layers in reflection mode, it