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Proxima Fusion in Munich seeks an Alpha Plasma Microwave Modeler to own the physics simulation pipeline linking gyrotron sources to plasma performance. You will model millimetre-wave propagation, polarization, and absorption to inform heat design.
You will interface with plasma physics, RF engineering, and systems design teams, validating ray-tracing results against experimental data to drive the Alpha ECRH launcher and gyrotron development.
Who We Are
Proxima Fusion is Europe’s fastest-growing fusion company and the continent’s best‑funded fusion player, as well as the first spin‑out from the Max Planck Institute for Plasma Physics (IPP). Backed by over €650M and powered by a growing team across Munich, Zurich, and Oxford, we are developing the hardware and infrastructure needed to deliver the world’s first commercial stellarator fusion power plant.
Our concept advances the most mature fusion technology out there, the Wendelstein 7‑X stellarator, through two next‑generation machines: Alpha and Stellaris. Our work combines stellarator optimisation, advanced computation, machine learning, and high‑temperature superconducting magnets to unlock higher‑performance designs that were previously out of reach.
Turning these designs into a functioning fusion power plant requires excellence and ownership across every discipline, from physics and engineering to software, manufacturing, law, and business functions.
As the Alpha Plasma Microwave Modeler, you will own the physics simulation pipeline that connects our gyrotron sources to plasma performance. You will model the propagation, polarisation, and absorption of millimetre waves in the Alpha stellarator, guiding the design choices that determine how effectively we heat the plasma.
You will sit at the interface between plasma physics, RF engineering, and systems design, working closely with the ECRH design lead, electromagnetic engineers, and academic partners to ensure that simulation insight drives hardware decisions.
You will establish the simulation baseline by running ray‑tracing and beam‑tracing codes across the Alpha operating space, validating these against W7‑X experimental data so that the results can drive the design of the Alpha ECRH launcher and gyrotron designs.
At Proxima Fusion, our mission is bold: making limitless clean energy a reality. To get there, we need a high‑performing, diverse team that brings different perspectives, challenges assumptions, and builds together with purpose. We know that diversity of thought and experience leads to better ideas, stronger execution, and a more resilient team. We don’t look at how you identify, what you look like, who you choose to worship, or what ethnicity you are. We care about what you can bring to the table.