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, cavity/waveguide networks, and polaritonic circuit elements. Design, fabricate, assemble, optimize and experimentally characterize integrated polaritonic devices and waveguides. Develop and operate optical
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, fabrication, optimization and experimental characterization of polaritonic waveguides, polariton lasers, cavity/waveguide networks, and polaritonic circuit elements. The role includes developing and operating
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deployments using telecom fiber networks or dedicated fiber-optic sensing systems in civil infrastructure and dense urban environments. Build scalable pipelines for DAS data quality control, denoising, event
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than 18,500 people, including over 14,000 students and 4,000 researchers from more than 120 different countries. Postdoctoral Research Fellow in Adaptive optics for ultrafast laser-matter interaction Mission
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distributed sensing technologies. The role will focus on distributed acoustic sensing on pre-existing telecom fiber networks, mobile sensing using vehicle fleets, multi-modal data fusion, and structural system
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and networking technologies. Key Responsibilities: As an integral part of the project, the Research Fellow is expected to: Design PIC components and integrate SNSPDs with photonic integrated circuits
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interpersonal skill (e.g. Ability to work independently / develop solutions under strict timelines, meticulous and eye for details / excellent organizational / time management skills) Ability to work
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telecom fiber networks. The role will focus on ambient and anthropogenic seismic noise for urban subsurface characterization, seismic source characterization, geophysical imaging, and environmental
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receivers, correlators, signal processing technology, and antenna design; and UV/optical/near-IR instrumentation such as adaptive optics, precision mechanics and detectors. Our instrument development
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, which includes radio correlators and signal processing, radio receivers, antenna design, adaptive optics, and UV/optical/near-IR instrumentation. Our instrument development activities include