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on quantum light, either usiing "discrete variables" (photon number superpositions) or "continuous variables" (field quadratures) Where to apply Website https://emploi.cnrs.fr/Offres/CDD/UMR9001-LOILAN-007
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of the CNRS and the University of Limoges. He (She) will join the “Phot-fibre” team in the “Fiber photonics and coherent photonic sources” axis. He (She) will collaborate with colleagues from A*STAR Singapore
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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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the laboratory involved in the project: 2 from the ECM team and 2 from EPS (Electrons-Photons-Surfaces) experimental physics team. The position is located in Palaiseau (Essonne) at the École Polytechnique research
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(Physics of Lasers, Atoms and Molecules, CNRS – University of Lille) brings together around 180 members and conducts research on light–matter interactions, structured around five main themes: Photonics
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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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typically takes a step of 10 nm in about 10 ms. The spatiotemporal precision of these measurements has been recently greatly increased by developing a new two-photon microscope (the signal is no longer
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optical to ultra-high-energy photons) or multi-messenger (gaamma-ray and neutrino) are possible with Gammapy. The main objective of this position is to set up the Gammapy ability to jointly analyse VHE
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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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). 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