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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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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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on the ultrafast response of dielectric materials driven by intense laser fields. The central goal is to understand how strong laser excitation induces ionization, plasma formation, nonlinear optical effects, and
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. It operates a 3.4 km-long X-ray laser, which produces X-rays of unique quality for studies in physics, chemistry, the life sciences, materials research and other disciplines. The diverse scientific
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, we use scalable, industry-relevant processes that ensure rapid transfer of our research results to industry. Thus, our work contributes significantly to closing the gap between basic science and
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. Metallurgy has provided humankind with materials, tools and the associated progress for more than five millennia. It is not only a huge engineering success story but has also become the biggest single
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plasma physics (XGC, IPPL). Expected qualifications: A Master's degree in Computer Science or Applied Mathematics. Necessary knowledge: Modern C++, GPU computing with CUDA/SYCL, MPI, Krylov solvers
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measurements that will be coupled to on-line analytics (c.f. https://www.nature.com/articles/s41563-019-0555-5). Specifically, an in-house designed flow cell is coupled to inductively coupled plasma mass