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/metal phase transition during the optical control of PCM materials (primarily GeTe-type compounds). As part of the OPALE project, we are offering an 11-month postdoctoral research position to tackle
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of studying and optimizing the microstructural and mechanical properties of granular materials bonded by a solidified foam, within the framework of the ANR project BONDINGFOAM. This mission is structured around
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transport, microscopy, and optical spectroscopy, to establish links between electronic structure and emerging physical properties. Design and perform optical and electronic characterization of two-dimensional
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, ideally molecular dynamics and/or DFT. Scientific programming skills, particularly in Python, are expected. Familiarity with machine learning or generative AI methods applied to materials would be a strong
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experimental physics, nanofabrication, low temperature measurements, THz optics, Python programming would be an asset. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UPR2940-ELOBER-173
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, phosphorescent Transition Metal Complexes (TMCs) possess appealing properties encompassing outstanding photo- and electro-chemical features, highly tunable emission color and relatively long-lived excited states
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the study of rare-earth nickelates in the infinite-layer phase, either partially or fully reduced. Partial reduction of these materials could lead to the emergence of new electronic and structural properties
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culture, is also expected. Proficiency in molecular cloning and the generation of recombinant plasmids would further strengthen the candidate's profile. Experience with optical microscopy techniques
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on the realization, characterization and measurement of the structural and transport properties of superconducting devices made entirely out of silicon. Superconducting Si thin layers will be realized by Gas Immersion
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and distributed sensing applications over optical fibers. The work will involve advanced manipulation of the phase of ultra-stable lasers, the development and implementation of advanced modulation and