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of the circular polarization by modulating electrically the spin-injection direction remains still a challenging issue.The goal of this PhD thesis is to study the electrical control of spin injection in a spin
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determine ideal nano-composites for permanent magnets. In collaboration with Aarhus University, you will get to validate your modelling results against experiments. You will also get to supervise a PhD
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engineered heterostructures with unconventional merging of functional materials to develop a new generation of sensors and quantum devices. Devices based on the synergetic combination of oxide ferromagnetic
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understanding of the switching mechanisms at the molecular level. This opens up unique opportunities in a highly interdisciplinary research environment. The central task of the PhD candidate in this project is
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pulsing. The position is funded by the DFG and is suitable for either a PhD or a Postdoc, depending on qualifications. You will build on recent observations of local magnetic property changes caused by