15 web-programmer-developer-"PhD-Jobs.NET" positions at European Magnetism Association EMA
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to body temperature, including the development and optimization of the associated electronics. The properties of the sensors developed by the researchers R3 (in CNRS-GREYC) and R4 (in CEA) will be studied
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stacking, both high performance and (very) high density can be achieved by this concept. The mission will be to explore, understand and develop the fundamental physics of device operation. This will require
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) — to join our team. You will be directly involved in developing and optimizing ion beam processes to improve device performance in MRAM and magnetic sensor applications. Beyond R&D, we are looking for a
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determine the nature of spin waves in two dimensional magnets and control their transport for the ultimate goal of developing nanoscale spin-wave devices. What you will gain: This is a multidisciplinary
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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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-accelerated micromagnetic simulations to study and develop spin Hall nano-oscillators. Prof. Åkerman’s team currently leads a major project funded by the Swedish Research Council (VR) through a Distinguished
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schools History News 2025 School Introduction Registration Program Committees Sponsors Contact Repository Lectures by topic Lectures by author Search lectures 2024 2023 2022 2021 2020 2019 2018 2017 2015
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schools History News 2025 School Introduction Registration Program Committees Sponsors Contact Repository Lectures by topic Lectures by author Search lectures 2024 2023 2022 2021 2020 2019 2018 2017 2015
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Description of the offer : Participation in the DFG-funded project “Light- versus electron-induced spin-state switching of complexes on insulating layers” within the Priority Programme SPP 2491
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these nanocomposites, we are looking for a postdoc to further develop high performance computing numerical methods in our state-of-the-art open source micromagnetic model, MagTense. MagTense is based on a core