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: - Physics, Engineering, Material Science or related fields - Background in solid-state physics or magnetism - Strong interest in experimental physics and cleanroom nanofabrication - Skills in computational
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(collection, selection and validation of relevant data for the analysis and production of input scenarios to our models); * A contribution to the definition of our scientific computing environment, in
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offering 300 ECTS) in software, physics, instrumentation or a related discipline A minimum of 5 years of experience in software engineering dealing with instrumentation related matters Sound knowledge in
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-controlled via spin-orbit coupling in a non-volatile manner, by a ferroelectric state. This opens up new programmable functionalities, such as the FESO (Ferro Electric Spin Orbit) technology, enabling the non
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microscopy and nanotomography. The main scientific areas covered by X-ray nano-tomography are cellular biology, neurosciences, biomineralization and advanced materials science (in particular energy materials
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our pioneering approach, SWs find their ignition in the propagation of surface acoustic waves (SAWs), a well-established technology already employed in contemporary sensors, filters, and microwave
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the antiferromagnetic resonance for spintronic THz detection. The Strasbourg institute of materials physics and chemistry (IPCMS) has over twenty years of expertise in the field of ultrafast magnetism and spintronics