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on superconducting circuits. **Main tasks and responsibilities:** - Microfabrication of circuits - Preparation of samples for measurement - Measurement of electronic properties of samples **Secondary tasks and
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), fast electronics and microwave detection chains at the quantum limit. The samples are fabricated in the Institut Neel's clean room (Nanofab), offering state-of-the-art equipment (100 keV electron beam
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the framework of the IMTECH project, we are looking for a talented researcher to contribute to the technological development of biomaterials co-integration on electronic sensors. The selected candidate will
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to propose an electronic wave packet that significantly increases the quantum yield of the photo-conversion reaction. - simulation of the quantum dynamics of the photochemical reaction induced
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measurements still needs to be developed and optimized for nanocomposites deposited on flexible substrates (Kapton). Furthermore, this device can be integrated into a scanning electron microscope (SEM), enabling
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charge of the IMN experimental part of the ANR BiBOP project on electron microscopy and XPS spectroscopy under controlled illumination and environments. Perform structural, physicochemical, and optical
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will develop and operate a reproducible computational workflow that combines molecular and periodic electronic-structure calculations, and when appropriate time‑dependent methods. The workflow will be
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structure of protein complexes formed in the presence of different surrounding lipids using cryogenic electron microscopy (cryoEM). To achieve this, various molecules can be used to "extract" the receptors
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researcher will join the bioinformatics team at the MMSB Laboratory (UMR 5086; MOMS team). Responsibilities: (1) computer simulations as part of the SELDOM project, focusing on interactions between lipids and
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cells - Characterisation of mechanical and morphological properties - Electrochemical studies (cycling, ionic/electronic conductivity) - Studies using optical microscopy and SEM - Presentation of results