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Description of the offer : For this modeling project, we are looking for a postdoc with expertise in micromagnetic modeling to model the magnetic properties of a novel type of rare-earth-free
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at low temperatures. This project is a collaboration between the Quanteca group and other research teams at Institut Néel, including the Micromagnetic and Nanomagnetic Materials groups. It is part of
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or micromagnetic simulation (e.g., Vampire, OOMMF, MuMax3); extraction of compact device models from first-principles results. Experiment End-to-end device fabrication: e-beam lithography, metallization, lift-off
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. The successful applicant is expected to have expertise in atomistic or micromagnetic simulation methods. Experience in both software development and the application of these methods is important and will be taken
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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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the PhD, but should be willing and able to learn micro and nanofabrication, electromagnetic and micromagnetic computational modelling, theoretical and experimental analysis of electromagnetic properties
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the following: Development and execution of micromagnetic simulations Calculations of high speed magnetisation reversal (including thermal gradients and spin currents) Evaluating and understanding experimental
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boundary effects are of particular interest. Applications include MRAM, field sensors, and nanoparticle systems. key words Magnetic systems; Micromagnetic modeling; Mathematical software; Reference problems
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functions. This project will investigate their potential through three key research objectives: 1. To develop automated design workflows for nanomagnetic devices by combining micromagnetic simulations with
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nanofabrication, electromagnetic and micromagnetic computational modelling, theoretical and experimental analysis of electromagnetic properties of metamaterials, as well as the fundamentals of microwave