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-based observatories, including the GISMO-2 dual-band (1.15 and 2mm wavelength) camera for the 30m Millimeter Radio Telescope. Finally, technology development for large format bolometer arrays and for MKID
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of objects, but current techniques are limited to small particles (micrometer to millimeter scale). In optics, the slowing down of light ("slow light") in structured media significantly amplifies radiation
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well-equipped laboratory for advanced millimeter wave measurements and a state-of-the art cleanroom facility. A major part our research is targeting new semiconductor materials and devices to enable
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of advanced antenna technologies for Integrated Sensing and Communication (ISAC) systems. The research will investigate passive and active antenna arrays operating in centimeter- and millimeter-wave bands
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, detectors, or low-noise electronics. Familiarity with mechanical and electrical design and associated software. Experience or background in CMB/millimeter-wave instrumentation. Required Documents CV. Cover
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nanometer CMOS and other related technologies. The target chips include digital signal processors, radio frequency and millimeter wave frontends, data converters, as well as larger systems with a mixture of
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Doctoral student in Electrical Engineering focusing on design of radio frequency integrated circuits
integrated circuits (IC:s) in advanced nanometer silicon (foremost CMOS) technologies, e.g. radio-frequency and millimeter-wave radio front-ends, data converters, digital signal processors, and larger systems
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staff position within a Research Infrastructure? No Offer Description Study, design, and experimental characterization of new miniaturized microwave and millimeter-wave devices with energy autonomy
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, sensing, and signal processing. RF Engineering: We encourage applications from those working in microwave and millimeter-wave circuits and systems, including antennas, RF front ends, next-generation
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PhD position in Adaptive Protocols for Decentralized Wireless Networks - Secure Mobile Systems Group
://doi.org/10.1109/DCOSS52077.2021.00014 [E] D. Steinmetzer, D. Wegemer, M. Schulz, J. Widmer, and M. Hollick. Compressive Millimeter-Wave Sector Selection in Off-the-Shelf IEEE 802.11ad Devices, 13th