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collected during LHC runs 2 and 3 will be used for this analysis. The measurements will be interpreted in the context of an effective field theory (EFT). In parallel to this work, the candidate will be
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on the choice of detection method, while exploring the possibility of parallelizing analyses on multiple markers. To this end, work on the design and manufacture of microfluidic chips will require the use
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, less strain is placed on sensors and computational resources, and the ratio between information gain and energy consumption is maximized. In parallel, various issues will be explored: definition
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pulses via nonlinear interactions in liquids, gases or crystals. In parallel, THz systems have been developed using ultra-fast photoconductors (PCs), in which a semiconductor (SC) is integrated with a THz
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are autonomous, such that energy is globally conserved - a precious tool to deliver accurate energy balances. A parallel and more effective strategy is to exploit the framework of stochastic thermodynamics