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magnetic nanoparticles for advanced imaging and sensing applications. The project targets new advances in Magnetic Particle Imaging (MPI) by co-developing advanced magnetic nanoparticles alongside next
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crystal lattice as the origin of magnetic frustration. Time-resolved magneto-optical imaging then enables extraction of intrinsic magnetic response times and direct real-time tracking of emergent magnetic
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imaging of the magnetization. Experiments are tightly coupled to micromagnetic simulations, which form a central part of the daily work, guiding sample design and underpinning the interpretation of every
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restrictions apply and required visa processes will be supported. A Ph.D. degree from the local University (UPV/EHU) will be granted after successful completion of the Ph.D. research. Suitable candidates should
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significant part of the work will involve the operation of the institute’s characterization infrastructure. The Post-Doc will take part in the general physicochemical and advanced magnetic characterisation
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processing mechanisms of the human brain are exploited. Such systems have the potential to enable energy-efficient computations and optimizations for future AI-like applications. A central part of the project
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responsibilities as a team member will include: • Sample Fabrication: Participate in cleanroom lithography processes and optimize deposition and patterning protocols. • Advanced Characterization: Perform
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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