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bars, process integration, and electrical/optical metrology to evaluate stacks for all-optical magnetic switching (AOS). You will plan and run cleanroom process flows end-to-end—from mask design and
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Anisotropy (PSA) MRAM, made independently by two groups, Tohoku in Japan, and SPINTEC in France. The proof-of-concept of R/W operation was made down to 5 nm electrical diameter (Fig.1). However, a bottleneck
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processing.
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semiconductors, topological, and twisted 2D materials, the study of dynamic processes in solids (e.g. charge, spin, heat, or mass transport), quantum-defect sensing (for sensing electric, magnetic, strain
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content and magnetic saturation by means of optimized processing and doping/alloying. In addition, some novel magnetic systems with reduced critical raw material contents will be researched. The project
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, statistical physics and quantum solid state physics is absolutely essential. Good computer skills are a plus. For further information see our group web page www.neutron.ethz.ch/. Applications should contain a
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that helps drive translation of energy efficient data storage and neuromorphic computing innovations to commercial success across a range of sectors. The Post You will explore the dynamic processes that occur
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of Professor R. J. Hicken. This Engineering and Physical Sciences Research Council (EPSRC) funded post is available from 30 March 2026. The successful applicant will investigate all optical switching processes