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an experimental standpoint, the unique self-assembly properties of these copolymers (synthesized via “click” chemistry) will be investigated using radiation scattering techniques (light and synchrotron) in
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scientific imaging, as well as access to hyperspectral imaging equipment and to heritage collections studied within the laboratory's activities. Where to apply Website https://emploi.cnrs.fr/Offres/CDD/UAR3224
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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
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scattering, atomic level shifts/widths, and annihilation observables, with a flagship focus on deuteron-antideuteron collisions and extensions to light p-shell nuclei. By separating sequential vs simultaneous
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Developing novel tools for the analysis of local order using total scattering data (TScat) EPSRC CDT in Developing National Capability for Materials 4.0, with the Henry Royce Institute PhD Research
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in experimental and computational magnonics, nanomagnetism, and spintronic systems. Development, implementation, and operation of advanced experimental platforms (e.g., Brillouin Light Scattering (BLS
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operation. Experience with high-pressure X-ray diffraction / scattering, optical spectroscopy in combination with diamond anvil cell (DAC) and Paris-Edinburgh (PE) techniques. Experience in interpreting
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, Nonlinear and Complex Systems , Nonlinear Integral Systems, Classical and Quantum , Optical Physics , optics , Optics and Photonics , Optomechanics , Photoelectron spectroscopies , Photon-based Scattering and