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a high-energy pump wave on a weak wave through cross-modulation. The main activity will be to develop and run numerical codes to describe the nonlinear propagation of optical waves in multimode fibers
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be solid-core or gas- or liquid-filled. Coupled-core fibers will also be used. The researcher will also seek to demonstrate the impact of a high-energy pump wave on a weak wave through cross-modulation
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/ General relativity , Gravitation Theory , Gravitational waves , particle physics around axions , Physics Beyond the Standard Model , Quantum Field Theory , Theoretical High Energy Physics , Theoretical
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breakwaters that integrate wave energy converters (WECs) and, tidal energy systems. Optimize design configurations to maximize energy harnessing and wave attenuation. 5. Experimental Testing Plan and conduct
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and for coastal management. The goal is to quantify predominant wave directions, governing directions of wave energy flux, directions of extreme wave conditions, and changes to these directions in
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for continuous and campaign-style recordings; perform time-series and spectral analyses. Integrate seismic signals with tides, water-level anomalies, and wave forcing; evaluate controls of sediment properties
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Quantifying the distribution of the energy flux through the solar atmosphere generated by ubiquitous multi-scale vortical plasma motions School of Electrical and Electronic Engineering PhD Research
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. Photoacoustic sensing (introductory video: https://youtu.be/2f3V0DQNLYg ) is based on a transformation of absorbed optical energy into ultrasound waves, when a transient optical excitation is used. The optical
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Institut de Físiques d'Altes Energies (IFAE), Institut de Físiques d'Altes Energies (IFAE) Position ID: Institut de Físiques d'Altes Energies (IFAE)-Institut de Físiques d'Altes Energies (IFAE
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] Fellowship Title: Particle Theory Group Postdoctoral Fellowship at ITP-CAS Fellowship Type: Postdoctoral Location: Beijing, Beijing, China [map ] Subject Areas: High-Energy Theory / Gravitational Waves