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adipose tissue and pancreatic islets using a microfluidic multiorgan-on-chip 1) Funding: The PhD project is funded by the ANR PRC ISADIPO (ANR-25-CE14-7667), coordinated by M. Raoux, group leader
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. These protocols go beyond traditional Rabi and Ramsey spectroscopy using composite pulses with taylored phase, frequency and intensity. The protocol's key feature is robustness. By actively canceling environmental
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driving conditions, stop-and-go operation, and progressive battery degradation. The objective of the PhD project is to develop estimation, fault detection/isolation, and fault-tolerant control methods
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of applications to on-chip quantum technologies. The PhD thesis will take place in the GEMaC laboratory (UVSQ/CNRS) located in Versailles. In the Quantum Nanophotonics team, we have recently demonstrated a new
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are critically influenced by crystal symmetry, spin–orbit coupling, and structural distortions. This project aims to go beyond conventional carrier dynamics by combining non-resonant and resonant excitation
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lane-keeping and stop-and-go will be considered. The second part of the work aims to extend the study to more complex driving situations in dynamic environments with other road users (pedestrians
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" (Hirschman, 1970) of high-level athletes who choose to leave the traditional international competition circuit; analyzing the discourse and the more institutional and collective mobilizations for or against