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LanguagesFRENCHLevelBasic Research FieldPhysicsYears of Research Experience1 - 4 Additional Information Eligibility criteria As the experimental approach combines quantum optics with cold atoms and cavity QED, the applicant
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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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-optic interaction on the micrometer scale. The recruited person will join the project from the initial stage. Initial steps are the fabrication and characterization of passive delay lines on GaN/Sapphire
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criteria • PhD degree (or equivalent) in physics, photonics, condensed matter physics, materials science, or a closely related field. • Strong background in experimental optics, spectroscopy
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more diluted source cooled by lasers, has a disadvantage linked to the effect of interatomic interactions, which we will study. A fibre-optic bench designed to control the gravimeter will be delivered
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Additional Information Eligibility criteria Physics, applied physics, engineering sciences, optics and/or MEMS technologies. Experience with atomic/quantum clocks, sensors and metrology is a strong plus-value
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laboratory and cleanroom facilities. • Spearhead innovation toward emerging applications in 2D quantum photonics and light-based neuromorphic computing. • Mentor and guide PhD students and interns, fostering a
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should hold a PhD diploma in the fields of photonics or applied physics, with theoretical and experimental skills on optics, laser physics and/or ultrafast/non-linear optics. The research involves design
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spectroscopy experiments, as well as coherent acoustic phonon generation measurements The postdoctoral position will be carried out within the Quantum Optics in Semiconductor Nanostructures Group (GOSS
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the CRYONEXT project. This program is part of the national strategy for quantum technologies. The aim of the CRYONEXT program is to secure France's supply of high-performance cryogenics systems for quantum