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-performance single-photon sources based on semiconductor quantum dots (QDs) in cavities [1]. In particular, we have developed efficient interfaces between a single material qubit (the spin of a single charge in
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photonic imaging and patch-clamp electrophysiology. The postdoctoral fellow will contribute in particular to different aspects: - in vivo calcium imaging (ex vivo imaging approaches and patch-clamp
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experimentally shown to modify phenomena like the quantum Hall effect. On the theoretical front, the interaction between topological matter and cavity photons was also considered. Topological materials are a class
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LHCb data of charmless B decays containing 0 or photons in the final state. She/he will be member of the LHCb team at IJCLab and work with the members of the team for the studies mentioned above. The
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CNRS researchers, 2 PhD students) of the accelerator physics department, which has developed expertise over more than twenty years in Compton interaction for the production of high-energy photons
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at high photon energies) to develop operando cells for the investigation of buried interfaces in batteries. These new operando cells will allow us to surpass existing designs used for standard XPS
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). The unit is divided into ten research teams of varying size covering the thematic axes of photonics and waves, materials, energy, reliability of systems in constrained environments and sensors and
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, spanning quantum physics, chemistry, materials science, photonics, and computer science. The CESQ provides a collaborative, innovative environment that bridges cutting-edge experimental and theoretical
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shift a critical part of the spatial and photophysical information into the temporal domain, in order to drastically reduce the number of photons and the acquisition time required for image reconstruction
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validation. The postdoctoral researcher will work within the Metasurface Team at CRHEA, in close interaction with permanent researchers, postdoctoral fellows, PhD students, engineers, and external