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within the Solid-state Quantum Technologies team (S2QT – https://solidstatequantumtech-l2c.fr/ ) of the Charles Coulomb Laboratory in Montpellier. The doctoral work will be supervised by Vincent Jacques
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- Quantum Electronic Circuits Alps. Where to apply Website https://emploi.cnrs.fr/Offres/CDD/UPR2940-ELOBER-173/Default.aspx Requirements Research FieldPhysicsEducation LevelPhD or equivalent Research
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of the complex III-V semiconductor stack forming the laser and transferred onto a 300 mm substrate by molecular bonding. A simplified example of the laser structure is: InP (4 µm) / GaAlInAs quantum wells (400 nm
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solid-state physics, optics, and quantum mechanics; - skills in developing numerical simulation codes and programming experimental; instrument controls; - ability to work as part of a team. Additional
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Fabrication en the clean room facilities of the nanophotonic structures Optical characterization of the nanostructures Light–matter interaction at the single-quantum level is the cornerstone of quantum
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to photonic structures, in particular plasmonic structures, whose resonances are confined within a few nanometres. The equipment and experimental setups for quantum optics experiments (lasers, cryostats
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the team “Solid-State Quantum Technologies” at the Laboratoire Charles Coulomb (L2C, UMR5221) in Montpellier. This PhD thesis is funded by the Quantera project TEMISIS. A novel type of individual quantum
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of the following areas: quantum mechanical systems, condensed matter physics, or quantum optics. A strong interest in gaining a deep understanding of physical phenomena, as well as a curiosity for the theoretical
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program in Physics, Optics or Engineering. The position is available immediately. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR9001-RAFCOL-014/Default.aspx Work Location(s) Number
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the optical and quantum properties of innovative materials. Its research focuses on photonics, spin coherence, nanomaterials, perovskites, and quantum phenomena, with applications in optoelectronics and quantum