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Field
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Research Unit jointly operated by the CNRS and the University of Lille. Founded in 1998, it builds on more than sixty years of scientific excellence in Lille in the study of light–matter interactions. Its
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Electron Laser (EuXFEL) is an X-ray laser facility driven by a superconducting linear accelerator. It is currently the brightest X-ray source of its kind, enabling unprecedented discoveries in the physical
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chemistry. Working with us means learning something new every day. You will be affiliated with the research project V-QUTE, where we will push the limits of matter-wave interferometry with nanoparticles
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robotics applications and has application in all three endoscopic areas. The goal of the PhD is to computationally design using a simulation-guided approach and synthesize via light-based 3D-printing
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industries. Conventional crosslinking relies on energy-intensive UV curing or heating with a high carbon footprint. Therefore, new visible-light induced photocatalytic approaches are needed that combine fast
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then explore the actuation of the two types of actuators, triggered by heating or UV light exposure, and finally explore their use as micropumps for supporting waste disposal and nutrient injection
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that antiferromagnets can exhibit spin splitting even without SOC, including in centrosymmetric, light-element materials—an emerging class known as altermagnets, opening new directions for spintronics. This PhD project
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research and manufacturing, alongside access to major international X-ray and neutron facilities like the Diamond Light Source and ISIS Neutron and Muon Source. This combination of industrial-scale and large
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PhD in Optical Characterization and Photonic Performance Analysis of Liquid Crystal Polymer Coatings
develops liquid crystal polymer coatings that can selectively control the direction, wavelength, and polarization of reflected and transmitted light. These materials are designed for optical systems in which
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smart optical interfaces, require materials that can guide light selectively: information should be visible to the user, while remaining hidden from outside observers. This project addresses