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Diana Navas09/01/2026, 14:00
Liquid-based detector technologies play a central role in advancing neutrino physics, providing complementary detection concepts across a broad energy range. Current and next-generation neutrino experiments employ Liquid Argon Time Projection Chambers, as in DUNE, large transparent Liquid Scintillator detectors, such as JUNO, or Water Cherenkov detectors, exemplified by...
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Chiara Capelli09/01/2026, 14:30
Dual-phase xenon TPCs have been at the forefront of direct dark matter detection for the last two decades. Originally designed to search for weakly interacting massive particles scattering off xenon nuclei, continued developments to reduce radioactive backgrounds, increase active mass, and improve signal reconstruction have made these detectors suitable to search for several other rare-event...
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Dr Saul Alonso Monsalve (ETH Zurich)09/01/2026, 15:00
Deep learning is becoming an increasingly important part of particle physics, providing powerful ways to meet the growing demands of modern data analysis. This talk highlights a selection of advanced deep-learning approaches developed for neutrino physics. I will discuss recent progress using models such as transformers, along with domain-adaptation techniques including contrastive learning,...
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