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At QuSpin, our theory activity focuses on developing models for the utilization of spins and other quantum degrees of freedom in magnetic materials, superconductors, and in topological states of
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conversion of waste heat into energy. Applications include, for instance, wireless sensor networks for IoT, Industry4.0 (e.g., health monitoring of machines, industrial and civil structures) as well as novel
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is based on the conversion of a charge current in a material with a strong spin-orbit coupling into a spin current that is absorbed by the adjacent magnetic layer to be reversed (and which stores the 0
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involving researchers from the Institute of Mineralogy, Physics of Materials and Cosmochemistry (IMPMC) and the the Institute of NanoSciences of Paris (INSP). Magnons are the fundamental units of magnetic
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strongly appreciated. The candidate will have to collaborate cross-border and in a multidisciplinary context with partners working in quantum chemistry, materials chemistry and applied mathematics