Reconstruction of atmospheric neutrinos in DUNE’s horizontal-drift far-detector module
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This paper reports on the capabilities in reconstructing
and identifying atmospheric neutrino interactions
in one of the Deep Underground Neutrino Experiment’s
(DUNE) far detector modules, a liquid argon time projection
chamber (LArTPC) with horizontal drift (FD-HD) of ionization
electrons. The reconstruction is based upon theworkflow
developed for DUNE’s long-baseline oscillation analysis,
with some necessary machine-learning models’ retraining
and the addition of features relevant only to atmospheric neutrinos
such as the neutrino direction reconstruction. Where
relevant, the impact of the detection of the charged particles
of the hadronic system is emphasized, and comparisons
are carried out between the case when lepton-only information
is considered in the reconstruction (as is the case for
many neutrino oscillation experiments), versus when all particles
identified in the LArTPC were included. Three neutrino
direction reconstruction methods have been developed
and studied for the atmospheric analyses: using lepton-only
information, using all reconstructed particles, and using only
correlations from reconstructed hits. The results indicate that
incorporatingmore than just lepton information significantly
improves the resolution of both neutrino direction and energy
reconstruction. The angle reconstruction algorithms developed
in this work result in no strong dependence on particle
direction for reconstruction efficiencies or neutrino flavor
identification. This comprehensive review of the reconstruction
of atmospheric neutrinos in DUNE’s FD-HD LArTPC
is the first step towards developing a first neutrino oscillation
sensitivity analysis, which will ready DUNE for its first
measurements.
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ABBASLU, S. et al. Reconstruction of atmospheric neutrinos in DUNE's horizontal-drift far-detector module. European Physical Journal C, Berlin, v. 86, e904, 2026. DOI: 10.1140/epjc/s10052-026-15911-w. Disponível em: https://link.springer.com/article/10.1140/epjc/s10052-026-15911-w. Acesso em: 8 set. 2026.