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Field
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the properties of light, as they exhibit low optical losses and can support optical resonances. They have been successfully developed to produce structural colors, nonlinear optical responses, and specific
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of the fabricated structures. This position offers an excellent opportunity to develop expertise in high-precision silicon microfabrication within a multidisciplinary research project combining nanotechnology
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. These sources are intended for the emerging market of quantum physics applications requiring the cooling and manipulation of cold and trapped atoms. It is structured around two main axes: The functionalization
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of Neural Networks" team studies the mechanisms of information integration in neural networks, particularly in motor control structures. The work will be performed under the supervision of Dr. Antoine Valera
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. The cosmology and astroparticle team (https://astrocosmolapth.com ) conducts research on cosmic large-scale structure, cosmic microwave and infrared backgrounds, cross-correlations between cosmological datasets
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collaborations. Structured into five research teams (theory, cosmology, gravitation, high-energy astrophysics and particles), APC fosters cross-disciplinary exchange and hosts a vibrant scientific community. As
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theory. The researcher will work in the G-SCOP laboratory, in the "Combinatorial Optimization" team, on geometric aspects of graph theory, in particular the links between structure and metric, and the
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molecular architecture on semiconductor surfaces ; Study of the influence of structural properties on device sensitivity · Preparation of organic monolayers with controlled architectures/structural properties
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Description The project aims to implement proton-detected fast MAS solid-state NMR methods to investigate the structure of viral membrane proteins and their interactions with nucleic acids. A central objective
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the molecules studied (different lengths of the alkyl chain) self-assemble into perfectly monodisperse nanodomains (NDs) forming, under the effect of surface pressure, hexagonal crystal structures. We also