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. The main activities include: (i) the experimental implementation and characterisation (spectral, spatial and intensity noise) of frequency conversion devices using chalcogenide components/materials (crystals
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improvements. Examples include optimizing the squeezing of the vacuum to minimize quantum noise, a prototype cryogenic interferometer, using machine learning for nonlinear feedback control, devising techniques
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support the research and development of a new generation of light source based on gas-filled hollow fibers. Despite the rise of novel nonlinear materials, the generation, control and application of light
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 4 days ago
, vibrating bubbles, nonlinear waves, and active matter. We welcome candidates with theoretical expertise, though applications from outstanding experimentalists are also encouraged. This position will be