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Field
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website Research The candidate aims to develop and apply new insights into nuclear fusion technology with a focus on advancing 2D and 3D simulation methodologies for plasma transport, heat transfer and
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simulations with advanced capabilities are essential to predict turbulent transport and plasma-wall interactions in realistic geometries. Objective: A 2-year postdoctoral position (renewable) is available
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systems incorporating both experimental work and numerical simulation or modelling. Experience in plasma source development, plasma diagnostics, reactor optimisation or analytical chemistry would be
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planetary moons. The position will involve analyzing particle and field measurements acquired by spacecraft missions and using advanced space plasma simulation tools to interpret spacecraft observations
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models and simulation tools to understand physical processes in fusion applications that involve liquid metal magnetohydrodynamics and plasma physics, such as breeding blankets and liquid-metal plasma
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ESTHER is a 1D Lagrangian code for radiation-matter interaction that studies the evolution of materials transitioning from the solid phase to the plasma phase under the effect of an intense radiation pulse
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plasmas. Run and analyse large-scale simulations; quantify particle/heat transport and turbulence statistics. Validate and interpret results with collaborators, and document outcomes in publications and
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Job description: DESY DESY expands its research on novel laser-plasma accelerators (LPAs) for future applications in health, photon science, and particle physics. At the core of these activities is the
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-particle physics, predictive modeling, and AI-enabled digital twins for magnetically confined fusion plasmas in tokamaks. The research will combine high-fidelity simulations, reduced transport modeling
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-dimensional effects on electrostatic instabilities in Hall thrusters. I. Insights from particle-in-cell simulations and two-point power spectral density reconstruction techniques', Phys. Plasmas, vol. 30, no. 1