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Field
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HDL code of SPARROW (e.g., with logic gates and multiplexers) to simulate transient faults, ideally through automated insertion. Conduct fault injection campaigns on the target hardware platform
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this, the postdoc will use innovative modeling based on the coupling of (1) a meteorological model adapted to the fine spatial scales of these systems and explicitly simulating turbulent structures, and (2) a
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evaluate these developments using existing hardware components. - Contribute to the simulation of a high-granular calorimeter with Geant4 as well as its readout and trigger electronic chain. - Develop and
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to explore systems in which light (near-infrared) and acoustic phonons (20–300 GHz) can be confined simultaneously. Numerical simulation and optimization of acoustic and optical resonators Design and
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simulation work related to laser-plasma acceleration. This project contributes to the development of compact electron beam optics and diagnostics, essential for advancing the applications of plasma
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Theory of Large-Scale Structure (EFTofLSS)—to include the effects of massive neutrinos and non-standard dark matter, validate theoretical predictions against simulated datasets, forecast expected
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the light of the experiments. - Stochastic simulation of a noisy dynamics associated with the ODE. - Reiteration and redesign of the experimental part. Related activities : Writing reports in form
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quantum dots. In particular, based on our recent result in small arrays, we aim at exploiting coherent control of spin qubit in larger arrays to perform quantum simulation or algorithm. Therefore
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data are being collected to evaluate the viscous behaviour of WJ derivatives (Da Rocha et al., 2024), as well as their damage for surgical applications (Da Rocha et al., 2025b). Simulations will be
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Innsbruck (J.Phys.Chem.A2021,125,7662−7669) in an existing machine. The successful candidate will be responsible for the theoretical design (SIMION simulations), mechanical design (SOLIDWORKS), and final