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Multiple PhD positions in magnetism and spintronics are available within the Quantum Grenoble Doctoral Programme (3 different funding schemes). The call is open from 26 January till 16 March 2026
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magnets, unconventional magnetic systems, and topological materials. The candidate will develop and apply advanced computational techniques, including (TD)DFT and post-DFT analyses, alongside spin dynamics
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of Physics, University of Oxford. The research will focus primarily on the development of 2D spin computing devices. All applications must be made through the central University of Oxford graduate admissions
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computing as well as smart communication applications based on state-of-the-art magnetic tunnel junctions coupled into interacting networks. The ultimate goal will be to develop small scale demonstrators with
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magnetometry, with the ultimate goal of enhancing coherence times and advancing the scalability of quantum computers. A goal of the project is to develop a mK-widefield quantum sensing tool in our Blufors
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high magnetic fields and low temperatures). More info at https://www.nanogune.eu/en/nanogune/join-us/open-position/504-pre-doctoral-researcher-non-linear-electronic-transport-2d-magnetic-materials-symbad
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combined computational/experimental workflow for the AI-supported design of sustainable magnets free of rare earth elements. The activities focus on MnBi-based magnets with the goal to improve α-phase
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Job description - Developing device-to-architecture level models of emerging nanoscale devices (spintronic, resistive, or hybrid) for in-memory and neuromorphic computing. - Exploring hardware-level
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for this position. Research interests of the current faculty are predominantly in experimental and theoretical/computational condensed matter physics, including: semiconductor materials and optoelectronic devices
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Description of the offer : The goal of this project will be to investigate ultrafast magnetization dynamics, with spatial and temporal resolution, via resonant excitation of optical phonons driven by THz pulses from the free electron laser FELIX. The questions of interactions between the crystal...