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laser beams, in the context of future laser fa-cilities for inertial fusion. It will be carried out within the theory group TIPS (Theory, Plas-ma Interpretation & Simulation), in close collaboration with
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simulations, optical modeling, and rigorous experimental validation. The focus will be on the design, prototyping, and testing of a novel XAO instrument based on the iMz architecture. Unlike conventional
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◦ Controlled simulations (nonlinear SDEs, active models, dynamics with memory). ◦ Study of the robustness of the methods (noise, low sampling frequency, partial observability). 6. Application to real systems
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activate spinal networks. This PhD project aims to investigate the underlying mechanisms of rSynES-induced recovery using a mouse model of cervical SCI, through longitudinal assessment of molecular and
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, numerical process simulation, and advanced characterization techniques (synchrotron, TEM, EBSD), will be implemented. The ideal candidate will hold a Master's degree or an engineering degree in Materials
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enhance the predictive capability of models used to analyze severe accidents and their long-term consequences. Objectives of the Research The objective of this postdoctoral research is to improve our
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), referred to as NSS (Neuromorphic Spike Sorter). NSS has been validated in simulation and has demonstrated promising performance on neuromorphic hardware such as Loihi 2. The goal of this PhD project is to