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developing a new generation of intelligent, reconfigurable and scalable high-power fibre-laser systems, combining advanced photonics with artificial intelligence and computational optimisation. This position
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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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a 8 fs laser setup and generate structural light from it. You will work collaboratively within the team at Imperial College. You will hold a PhD in Physics (or a closely related quantitative
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: The Postdoctoral Fellow provides for an internship and continuation of scholarly activity and research after achieving the PhD or other doctoral degree under the direction of a senior faculty member who
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. Generating spatially patterned THz waves typically involves a two-step process: (i) photoexcitation of silicon with patterned laser pulses, leading to conducting (illuminated) and non-conducting (non
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and experience | Kā pūkeka me kā wheako The successful candidate will have: • A PhD in Physics. • Extensive experience with experimental atomic and optical physics, including experience with laser
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benchmarks for optical characteristics such as insertion loss and beam quality by integrating real-world data, such as empirical beam profiles from high-power laser diodes. Validate simulation models by
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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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at national facilities to reveal short-range correlated disorder, invisible to long-range structure probes. This project will use a state-of-the-art, laser-heated, high-pressure image furnace to synthesise
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expected to conduct research in integrated polaritonic devices and waveguides, including the design, fabrication, optimization and experimental characterization of polaritonic waveguides, polariton lasers