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at subwavelength scale and to support the development of compact, high-performance detectors. This PhD project proposes the design, simulation, fabrication, and characterization of plasmonic antennas for infrared
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on advanced lens antennas for millimeter-wave and sub-THz systems. The research focuses on artificial electromagnetic materials and periodic structures for wave manipulation, with applications in high
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electromagnetics. Familiar with FEKO/HFSS/CST, ADS, and Matlab. Experience in antenna design, fabrications, and measurements. Ability to analyze complex data and generate microwave images. Strong laboratory skills
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electromagnetics. Familiar with FEKO/HFSS/CST, ADS, and Matlab. Experience in antenna design, fabrications, and measurements. Ability to analyze complex data and generate microwave images. Strong laboratory skills
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of a GHz antenna using diamond NV center microscopy Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR7588-MATMIV-017/Default.aspx Requirements Research FieldMathematicsEducation
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29.07.2026, Academic staff The project aims to develop, implement, test, and demonstrate physical-layer security strategies that exploit wireless channel characteristics, multi-antenna transmission
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signal generation, transmission and antenna measurement capabilities up to 110 GHz with an upcoming state-of-the-art anechoic chamber. Job description We are inviting applications for a Doctoral Researcher
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engineered with metallic antennas. A quantum cascade structure is embedded in a metallic microcavity. The microcavities also operate as antennas, and are arranged into an array to generate a coherent
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programme Reference Number AE2026-0232 Is the Job related to staff position within a Research Infrastructure? No Offer Description Portuguese version: https://repositorio.inesctec.pt/editais/pt/AE2026-0232
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(attenuators/shutters, low-profile and highly directional antennas) with a view to surpassing the current state of the art. The work will be carried out at the XLIM laboratory, UMR 7252 CNRS/University