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interdisciplinary teams are advancing next-generation materials and technologies. This role focuses on developing highly sensitive and fast X-ray photodetectors using emerging semiconductor materials, contributing
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Postdoctoral Research Positions in Colloidal Quantum Dots for Infrared Photodetectors Our lab has made significant advances in III–V colloidal quantum dots (CQDs) and extended-SWIR PbS materials
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Postdoctoral Research Positions in Colloidal Quantum Dots for Infrared Photodetectors The FuN Lab at KAUST has made significant advances in III–V colloidal quantum dots (CQDs) and extended-SWIR
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 16 days ago
silicon-based photodetectors. Research efforts within our UV detector technology team focus on tailoring epitaxial interfaces to enhance detector responsivity, stability, and long-term space worthiness
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ETpathfinder will use new wavelengths — 1550 nm and 2090 nm — required to operate cryogenic monocrystalline silicon test masses at their minimum optical Commercial photodetectors and front-end electronics
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thin-film transistors (OTFTs), organic electrochemical transistors (OECTs), photovoltaics, photodetectors, photocatalysis, and bioelectronics. Working within a multidisciplinary team, the successful
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diodes, photodetectors, or solar cells. The candidate will interact on a regular basis with computational scientists in charge of predicting the stability and properties of such nanocrystals. We
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integrated devices and circuits, with a particular focus on photodetectors and optoelectronic components. Develop and implement advanced optical, electrical, and electro-optical testing methodologies at wafer
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. Develop, align, operate, and maintain optical systems for laboratory-based detector measurements, which may include lasers, optical cryostats, microscopes, photodetectors, filters, lenses, optical mounts
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statement (maximum two pages) describing past achievements in gravitational wave instrumentation and planned contributions, with emphasis on low-noise readout electronics and photodetector front-end design