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offering a Praedoc (f/m/x) position (40 hours per week / full time) in the project “Rare earth element-free hard magnetic alloys” for a 3-year term of employment. The aim of the project is to develop a
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The project focuses on using magneto-ionic elements as a method of tuning magnetism, creating an indirect coupling between an applied voltage and the magnetic properties and allowing
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-reciprocity of spin waves Angular Momentum of Magnons Magnetically doped Transition Metal Dichalcogenide Thin Films via Molecular Beam Epitaxy Modeling of a magnonic diode based on spin-wave non-reciprocity in
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topological stability, nanoscale size and fast nonlinear dynamics, making them promising building blocks for spintronic neurons, synapses and reservoir-computing elements. This project will systematically scan
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)), through which dynamical responses of the monolayer flakes are measured at cryogenic temperatures. We will perform spectral analysis of the hybrid states and extract the device and material parameters
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of Physics and Astronomy). In this project, we aim to explore an alternative method of localizing excitons and creating QEs by constructing metamaterials combining semiconducting transition metal