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are seeking Postdoctoral Fellows in nonlinear optical fiber communication. You will join the Optical Communications Group (GTO) in the Communications and Electronics Department. The GTO is home to the research
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of nonlinear dispersive equations and their discretization. The objective will be to establish new robust and efficient schemes for the simulation of quantum fluids dynamics, to perform their numerical analysis
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ultimate aim will be to exploit THz QCLs frequency combs (FCs) as nonlinear sources, coupled with optimised cavity-coupled coherent detectors. QCLs are practical miniaturized lasers at THz frequencies. FC
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nonlinear inverse Compton scattering and from extreme beam-multifoil collisions (eg in the E-332 experiment at SLAC). The project will include the development of advanced measurements and detectors
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of the 2005 urban riots in France (https://doi.org/10.1038/s41598-017-18093-4 ). It will draw on data concerning these riots, the 2007 urban riots in the Ile-de-France region, and the Yellow Vests movement
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research. We offer a unique opportunity to lead cutting-edge investigations into emerging phenomena such as sliding ferroelectricity, ultra-low-threshold nonlinear photonics, and exciton engineering. This
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axes: Waves and quantum physics; Photonics; and Nonlinear Physics, Complex Fluids and Biophysics. The projects developed around these themes cover theoretical, fundamental and experimental aspects as
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at the forefront of nanophotonics and 2D materials research. We offer a unique opportunity to lead cutting-edge investigations into emerging phenomena such as sliding ferroelectricity, ultra-low-threshold nonlinear
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Inria, the French national research institute for the digital sciences | Pau, Aquitaine | France | 3 months ago
implementation will be performed in the open-source code Hawen (https://ffaucher.gitlab.io/hawen-website/ ) developed in the team Makutu, with help from from the developer's team. Phase 1: modeling The first phase
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in the field of nonlinear dispersive equations, with a particular focus on the dynamics of multisolitons. This research will be carried out within the framework of the ERC project 'INSOLIT,' led by