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live in. Your role Since 2006, the University of Luxembourg has invested in its own High-Performance Computing (HPC) facilities. Special focus was laid on developing large computing power combined with
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aims to develop a novel high-performance Particle-In-Cell (PIC) code for plasma physics simulations, leveraging the capabilities of exascale computing systems. By optimising PIC algorithms for modern
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to preserve the internal charge and handle the output signal of the RE (buffering function, polarity and gain adjustment). More precisely, a new embedded analog system will be developed, tested and evaluated
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experiments. The objective is to develop Bayesian causal models and neural networks capable of identifying relevant causal relationships between instrumental parameters and observed anomalies. The work will
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. SOT-MTJs offer compelling advantages similar to SRAM, including ultra-fast dynamics (sub-ns), exception-al endurance (>1014 cycles), and low power operation (sub-pJ). A critical challenge in SOT-MRAM
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available to work on computational models of artificial evolution for aptamer design, expected to start between November 2025 and February 2026. Aptamers are often obtained through rounds of in vitro
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Learning within the Department of Education and Social Work at the University of Luxembourg. The person will be part of a team in the dynamic organisational context of a growing, globally connected research
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-Precision Measurements: Implement fast, next-generation thermal techniques to investigate unconventional superconductors and spin liquids. Collaborate and Innovate: Work closely with an energetic research
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scales, requires the epitaxial growth of magnetic insulators in thin and/or very thin films. The PhD work thesis will focus on the growth of ultra-thin YIG layers by Liquid Phase Epitaxy in Pb-based and Pb
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A post-doctoral position in human population genomics is opening in our lab to work on the POPGEN project. The POPGEN project is a pilot research project developed in the framework of the French