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workflow that maps first-principles electronic-structure data onto predictive atomistic spin-Hamiltonians and device-scale dynamical models. The candidate will run high-throughput, relativistic DFT
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): Altermagnetic Spintronics Magnon transport in two dimensional systems: interplay between quantum geometry, topology and disorder Effective magnetization dynamics in coupled spintronic nano-oscillators Theoretical
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will include use and development of advanced synthesis and characterization techniques and advanced characterization routes to understand their (micro-) structural and magnetic properties. Further info
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magnets, unconventional magnetic systems, and topological materials. The candidate will develop and apply advanced computational techniques, including (TD)DFT and post-DFT analyses, alongside spin dynamics
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tight competition between qualitatively new collective spin states, such as topological structures, quantum spin liquids, multipolar ordered phases and spin-supersolids, to name only a few. Each state is