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for optical quantum technologies, such as the generation of entangled photons in linear cluster states or spin-photon or photon-photon logic gates. Le travail du post-doctorant sera dédié à l'étude de ces
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have developed a new paradigm for controlling micro-photonics systems based on the transition between optical states. We have particularly identified a specific architecture with potential applications
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represent an emerging optical technology and correspond to ultra-thin optical components. These devices are miniature, planar optical components made up of arrangements of structures (meta-atoms) of sub
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language and more specifically on eye movements during the reading of inclusive forms in sentence processing. The candidate will work at the LAPSCO and will join a project funded by the French ANR, entitled
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properties of quantum emitters with 2D optical metasurfaces, well beyond the performance offered by unique state-of-the-art nanoantennas. To do this, non-classical light nanosources will be precisely
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optimize the synthesis of these spinel oxide thin films in order to improve their optical and electrical properties and their stability. In parallel, he/she will explore the integration
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into photonic structures enabling an overall source brightness enhancement. Two different geometries will be studied: in-plane cavities coupled to optical waveguides for lateral photon extraction, and bullseye
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insufficiently resolved and not sufficiently accurate. Transporting frequency and time reference signals by optical fibre is the most promising alternative. In France, the Laboratoire de Physique des Lasers (LPL
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crystal construction during annealing at high temperature. The optical behaviour of vanadate particles will be analysed in parallel using lanthanide spectroscopy. Structure-property relationships will be
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properties in the solid-state in terms of long optical and spin coherence lifetimes, and are thus among the most promising materials for building light-matter interfaces at the quantum level. These systems