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Field
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, and galactic outflows, allowing us to determine how these processes are connected. This is only possible in the mid- and far-infrared. Dust obscures the ultraviolet and optical light commonly used
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Primary supervisor - Dr Julea Butt This exciting project will engineer light-driven microreactors converting nitrate to ammonia thereby delivering proof-of-principle for a sustainable technology
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the nanoparticle’s magnetic moment by exploiting the sensitivity of their excited state to the electronic and thermal surroundings. We will thus investigate how light could impact the magnetic properties at short ns
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machine-learning approaches. Established markers such as neurofilament light chain (NfL) and GFAP will provide a biological reference point for identifying disease-specific biomarkers. A central part of the
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certain industrial processes. CST systems produce heat by concentrating solar radiation onto a receiver using a field of mirrors. This heat, removed by a Heat Transfer Fluid (HTF), can either be used
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this project, you will determine the properties of an icy moon analog surface through a series of laboratory experiments accounting for gravity, temperature fluctuations, and radiation effects. Icy grains will
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of either a spatial light modulator (SLM) or a deformable mirror to compensate for these residual aberrations. The resulting adaptive optics system will then be validated on the ChroMS microscope
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and data taking, designing and constructing upgrades to the machines, data analysis, literature research, and article writing. You will also take an active role in group activities, such as bachelor and
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, and materials science. In this PhD project, you will: § Develop an experimental platform to study 3D self-organization of active particles. § Fabricate and characterize light-driven microswimmers
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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