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at interfaces and in the bulk. The work will involve operando electrical and optical characterizations, spatially resolved analyses of performance and degradation mechanisms, and the development or adaptation
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and optimize their properties for neuromorphic computing through combined electrical and MOKE measurements, and train them to achieve artificial intelligence tasks. - Micromagnetic simulations - machine
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generation of laser sources. These devices are based on a physical separation between electrical addressing and optical emission, enabling the design of addressable Tamm lasers with high potential
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description The recruited researcher will be in charge of the development of organoiron
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, nanofabrication, and experimental photonic characterization. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7073-MICPEF-096/Candidater.aspx Requirements Research FieldEngineeringEducation LevelPhD
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the transverse quantization in units of e2/h can reach an extraordinary precision better than 10-10, which now defines the primary standard of current in metrology. Still, any complex heterostructure design must
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, cell biology experiments, biochemistry, metabolic profiling, measurement of metabolic or electric activities via probes or MEA system, and in vitro imaging using confocal microscopy). • Animal experiment
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)-electrochemical cell, Photon-to-Current Efficiency (IPCE) measurement with an action-spectra analysis (tuneable from the UV to the NIR), UV-visible spectroscopy (for solid and liquid) and FTIR spectrometer. Where
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, the laboratory is situated in a rich international scientific environment, home to major research institutes and technology companies. On a daily basis, he/she will work directly within the team in charge of
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environment spanning various areas of quantum physics, nanophysics and photonics. This project extends the current activities of the ODIN/MIR-THz group on acoustic wave devices in the frame of the Acousto-MIR