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will join the X-ArT consortium, an international collaboration that includes France, the United States, Italy, Poland, and the UK. The work site will be the APC laboratory (Paris), where the X-ArT group
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theories of disordered topological superconductors. - Simulation and analysis of realistic disordered superconductors lattices using state-of-the-art techniques, such as k.p modelling, quantum field theory
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neurodegenerative diseases" at the Paris-Saclay Institute of Neuroscience (Saclay, 25km South of Paris, France), a state-of-the-art multidisciplinary research institute, from brain development to integrative network
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fine detail, which will be used to develop detailed atmospheric degradation mechanisms. At the same time, isotopic composition will be studied using a state-of-the-art orbitrap technique, which will be
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properties of quantum emitters with 2D optical metasurfaces, well beyond the performance offered by unique state-of-the-art nanoantennas. To do this, non-classical light nanosources will be precisely
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centers equipped with state-of-the-art technology for physicochemical analysis (NMR, mass spectrometry, X-ray diffraction, etc.). The project benefits from the complementary expertise of Mihail Barboiu's
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motivated post-doc to work on the development and application of state-of-the-art approaches to detect changes in biodiversity from remote sensing data and standardised or citizen science datasets (e.g. GBIF
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methods to solve inverse problems, - Developing and deploying algorithms, as well as comparing them with state-of-the-art methods, - Writing scientific papers and presenting the results at national and
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of direct measurement of weak gravitational shear on individual systems, in contrast to the state of the art based on a large number of galaxies. The mission of this post-doctoral position will focus
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Energy Loss Spectroscopy (EELS) experimental data acquired by the German partner of the project on a state-of-the-art instrument. The strategy developed to tackle this challenging problem on the ground of