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) - Manipulate magneto-optical cryostats, pulsed and continuous-wave lasers, ultrafast electro-optical modulation systems, as well as detectors and electronic cards allowing the analysis of multi-photon
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- and nano-fabrication of devices (THz emitter and transistor) in a cleanroom, • optical and electrical measurements on the optimised devices, • analysis and interpretation of the data obtained
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intended for a highly motivated and dynamic student with a strong background in synthetic organic chemistry. Knowledge and/or initial experience in (i) electrochemical and/or photophysical analysis or (ii
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deliveries of water, sediments, carbon and nutrients also the C cycling in the connected lakes. Analysis of lake sediment cores will allow for reconstructing changes in land cover and erosions rates over
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simulating nanocarbon materials or catalytic systems. Proficiency in quantum chemistry software (e.g., VASP, AIMPRO, ORCA) and scripting languages (Python, Bash) for data analysis and workflow automation
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investigate the impacts of SAI deployment through the analysis of modelling experiments, either based on GeoMIP simulations or by conducting various experiments on ad hoc scenarios developed by researchers in
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or dissipation, which makes it difficult to precisely explore topological protection and phononic transport. Required qualifications: The candidate will be expected to contribute to data analysis and
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organized between the two teams. References : Fourier Analysis of Interference Scanning Optical Probe Microscopy. E. Soubies and W. Bacsa. IEEE Transactions on Computational Imaging, vol. 11, 2025. Optics
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films, the thin film patterning in clean room, the magnetic anisotropy measurements, the surface morphology analysis, the magnetic sensors characterization The selected candidate will be responsible
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for homogeneous photocatalysis. Physico-chemical characterization Structural, optical, and electronic analysis of materials (spectroscopies, microscopies, electrochemistry, etc.) to establish structure–property