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the transport and interaction of radiolytic species. To address this issue, the second approach will rely on molecular dynamics simulations using the LAMMPS code and ReaxFF empirical potentials, following
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systems, controllable loads); • Dynamic reconfigurations related to changes in topology and operating mode (connected/islanded); • The increasing interactions between physical and digital layers (sensors
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of centrifugal instabilities. The dynamics of large-scale structures will be probed using high-speed imaging of spontaneous plasma light emission, while spatially and temporally resolved plasma parameter
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art is an innovative and emerging field that must develop within an international dynamic, and we aim to contribute to one of these prestigious conferences. These methodological developments will be
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class of “hyper-clocks” and atomic sensors that are simultaneously immune to probe-induced shifts and strongly protected against decoherence, via Dynamically Decoupled Hyper-Ramsey (DD HR) protocols