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in wireless bioelectronics. Based on the preliminary results established by the host team and their collaborators in wireless bioelectronics1–3, the goal of this project is to design a wireless
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and 1550 nm, compatible with the most advanced technologies such as Ti:Sa fs lasers and CW telecom lasers. In recent years, ytterbium-based fiber lasers have demonstrated impressive capabilities by
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, to work on the demonstration of a new photonic device for FBG sensor interrogation. This device is a tunable Liquid Crystal-based Photo-Detector (LC-PD) recently demonstrated by our consortium [1]. Its
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appearance-based methods). Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR8554-BILSAY-001/Candidater.aspx Requirements Research FieldNeurosciencesEducation LevelPhD or equivalent Research
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states. During this primarily experimental thesis, the candidate may need to perform theoretical developments in quantum optomechanics and numerical simulations based on the encountered needs
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study of ammonia (NH3) flames assisted by plasma. NH3 flames are considered as alternatives to conventional carbon-based combustion in industries requiring high temperatures that electricity cannot