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to develop an optical pen using laser-induced magnetization dynamics and switching to write topological magnetic periodic structures that consist for example of skyrmions, topological magnetic whirls in
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physical characterization techniques (differential scanning calorimetry, dynamic light scattering, small angle neutron and/or x-ray scattering) to characterize the DIBs; and (3) Develop/implement image
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), and the Nanofocus Endstation of Micro- and Nanofocus X‑ray Scattering Beamline (P03/MINAXS), along with supporting laboratories. The techniques offered at our diffraction beamlines have a strong focus
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an integrated approach combining neutron, X-ray, and laser scattering, spectroscopy and microscopy techniques. In addition, the successful candidate is expected to contribute enthusiastically to the promotion
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, Chemistry , Coherent Phenomena , Cold Atom Physics , Cold Atoms and Molecules , Cold QCD Group , collider physics , Collinear Fast Beam Laser Spectroscopy , Complex Quantum Systems , Computational Materials
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of real-world exposome scenarios. The doctoral candidate will quantify the kinetics of homo- and heteroaggregation, as well as sedimentation dynamics in biological fluids, using dynamic light scattering
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to spin dynamics in a circular accelerator. Polarized electron and positron bunches will be specifically used for this purpose. They will be scanned to search for these resonances, and their polarization
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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 facilities
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time. The PhD will combine experiments, modeling, and numerical simulations. The experimental work will involve the design and fabrication of bubble metascreens using 3D printing, laser cutting, and
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materials allow the realization of nonlinear scattering processes with unique properties that are inaccessible using standard interactions. In particular, such properties are important for realizing