A strategy document projecting Hyper-Kamiokande's 10-year sensitivity to leptonic CP violation, neutrino mass ordering, proton decay, and astrophysical neutrinos, based on simulated analyses and assumed systematic uncertainties.
AI-based particle track identification in scintillating fibres read out with imaging sensors
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
This paper presents the development and application of an AI-based method for particle track identification using scintillating fibres read out with imaging sensors. We propose a variational autoencoder (VAE) to efficiently filter and identify frames containing signal from the substantial data generated by SPAD array sensors. Our VAE model, trained on purely background frames, demonstrated a high capability to distinguish frames containing particle tracks from background noise. The performance of the VAE-based anomaly detection was validated with experimental data, demonstrating the method's ability to efficiently identify relevant events with rapid processing time, suggesting a solid prospect for deployment as a fast inference tool on hardware for real-time anomaly detection. This work highlights the potential of combining advanced sensor technology with machine learning techniques to enhance particle detection and tracking.
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The Hyper-Kamiokande experiment: input to the update of the European Strategy for Particle Physics
A strategy document projecting Hyper-Kamiokande's 10-year sensitivity to leptonic CP violation, neutrino mass ordering, proton decay, and astrophysical neutrinos, based on simulated analyses and assumed systematic uncertainties.