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spend 50% of his/her time in Limoges and Lille Advanced neuromorphic computing in multimode nonlinear photonic systems: leveraging time-division multiplexing and modal coupling for computational
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spectroscopy, optical ranging, and neuromorphic computing, yet their intrinsically multidimensional nonlinear dynamics introduce a level of complexity that remains unresolved. Where to apply Website https
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experimental data. The goal is to provide new insights into parton dynamics at high energies and to identify clear signatures of gluon saturation. This PhD project tackles some of the most fundamental open
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Hz and 40 MHz), the wavelength and the pulse duration (the latter can be adjusted from 80 fs up to 20 ps) on the nonlinear optical responses. Objective 3: Ultrafast dynamics of the 2D layers. A deeper
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complex coefficients for growing array sizes. This problem becomes even more complicated in highly dynamic environments induced by user mobility. Finally, low-cost RF implementations incure hardware