Liquid argon time projection chamber detector technology provides high spatial and calorimetric resolutions on the charged particles traversing liquid argon. As a result, the technology has been used in a number of recent neutrino experiments, and is the technology of choice for the Deep Underground Neutrino Experiment (DUNE). In order to perform high precision measurements of neutrinos in the detector, final state particles need to be effectively identified, and their energy accurately reconstructed. This article proposes an algorithm based on a convolutional neural network to perform the classification of energy deposits and reconstructed particles as track-like or arising from electromagnetic cascades. Results from testing the algorithm ...
Liquid argon time projection chamber detector technology provides high spatial and calorimetric reso...
We present several studies of convolutional neural networks applied to data coming from the MicroBoo...
Machine learning (ML) techniques, in particular deep neural networks (DNNs) developed in the field o...
Liquid argon time projection chamber detector technology provides high spatial and calorimetric reso...
This thesis presents the results of a study of electromagnetic interactions in the ProtoDUNE-SP liqu...
Liquid argon time projection chamber detector technology provides high spatial and calorimetric reso...
We present several studies of convolutional neural networks applied to data coming from the MicroBoo...
Machine learning (ML) techniques, in particular deep neural networks (DNNs) developed in the field o...
Liquid argon time projection chamber detector technology provides high spatial and calorimetric reso...
This thesis presents the results of a study of electromagnetic interactions in the ProtoDUNE-SP liqu...
Liquid argon time projection chamber detector technology provides high spatial and calorimetric reso...
We present several studies of convolutional neural networks applied to data coming from the MicroBoo...
Machine learning (ML) techniques, in particular deep neural networks (DNNs) developed in the field o...