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Neutrino interaction vertex reconstruction in DUNE with Pandora deep learning

Publication ,  Journal Article
Abud, AA; Acciarri, R; Acero, MA; Adames, MR; Adamov, G; Adamowski, M; Adams, D; Adinolfi, M; Adriano, C; Aduszkiewicz, A; Aguilar, J; Aman, A ...
Published in: European Physical Journal C
June 1, 2025

The Pandora Software Development Kit and algorithm libraries perform reconstruction of neutrino interactions in liquid argon time projection chamber detectors. Pandora is the primary event reconstruction software used at the Deep Underground Neutrino Experiment, which will operate four large-scale liquid argon time projection chambers at the far detector site in South Dakota, producing high-resolution images of charged particles emerging from neutrino interactions. While these high-resolution images provide excellent opportunities for physics, the complex topologies require sophisticated pattern recognition capabilities to interpret signals from the detectors as physically meaningful objects that form the inputs to physics analyses. A critical component is the identification of the neutrino interaction vertex. Subsequent reconstruction algorithms use this location to identify the individual primary particles and ensure they each result in a separate reconstructed particle. A new vertex-finding procedure described in this article integrates a U-ResNet neural network performing hit-level classification into the multi-algorithm approach used by Pandora to identify the neutrino interaction vertex. The machine learning solution is seamlessly integrated into a chain of pattern-recognition algorithms. The technique substantially outperforms the previous BDT-based solution, with a more than 20% increase in the efficiency of sub-1 cm vertex reconstruction across all neutrino flavours.

Duke Scholars

Published In

European Physical Journal C

DOI

EISSN

1434-6052

ISSN

1434-6044

Publication Date

June 1, 2025

Volume

85

Issue

6

Related Subject Headings

  • Nuclear & Particles Physics
  • 5107 Particle and high energy physics
  • 5102 Atomic, molecular and optical physics
  • 5101 Astronomical sciences
  • 0206 Quantum Physics
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
 

Citation

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Abud, A. A., Acciarri, R., Acero, M. A., Adames, M. R., Adamov, G., Adamowski, M., … Berkman, S. (2025). Neutrino interaction vertex reconstruction in DUNE with Pandora deep learning. European Physical Journal C, 85(6). https://doi.org/10.1140/epjc/s10052-025-14313-8
Abud, A. A., R. Acciarri, M. A. Acero, M. R. Adames, G. Adamov, M. Adamowski, D. Adams, et al. “Neutrino interaction vertex reconstruction in DUNE with Pandora deep learning.” European Physical Journal C 85, no. 6 (June 1, 2025). https://doi.org/10.1140/epjc/s10052-025-14313-8.
Abud AA, Acciarri R, Acero MA, Adames MR, Adamov G, Adamowski M, et al. Neutrino interaction vertex reconstruction in DUNE with Pandora deep learning. European Physical Journal C. 2025 Jun 1;85(6).
Abud, A. A., et al. “Neutrino interaction vertex reconstruction in DUNE with Pandora deep learning.” European Physical Journal C, vol. 85, no. 6, June 2025. Scopus, doi:10.1140/epjc/s10052-025-14313-8.
Abud AA, Acciarri R, Acero MA, Adames MR, Adamov G, Adamowski M, Adams D, Adinolfi M, Adriano C, Aduszkiewicz A, Aguilar J, Akbar F, Alemanno F, Alex NS, Allison K, Alrashed M, Alton A, Alvarez R, Alves T, Aman A, Amar H, Amedo P, Anderson J, Andreopoulos C, Andreotti M, Andrews MP, Andrianala F, Andringa S, Anjarazafy F, Antic D, Antoniassi M, Antonova M, Aranda-Fernandez A, Arellano L, Arrieta Diaz E, Arroyave MA, Asaadi J, Ashkenazi A, Asner D, Asquith L, Atkin E, Auguste D, Aurisano A, Aushev V, Autiero D, Ávila Gómez D, Azam MB, Azfar F, Back A, Back H, Back JJ, Bagaturia I, Bagby L, Baigarashev D, Balasubramanian S, Balboni A, Baldi P, Baldini W, Baldonedo J, Baller B, Bambah B, Banerjee R, Barao F, Barbu D, Barenboim G, Barham Alzás P, Barker GJ, Barkhouse W, Barr G, Barranco Monarca J, Barros A, Barros N, Barrow D, Barrow JL, Basharina-Freshville A, Bashyal A, Basque V, Basu D, Batchelor C, Bathe-Peters L, Battat JBR, Battisti F, Bay F, Bazetto MCQ, Bazo Alba JLL, Beacom JF, Bechetoille E, Behera B, Belchior E, Bell B, Bell G, Bellantoni L, Bellettini G, Bellini V, Beltramello O, Benitez Montiel C, Benjamin D, Bento Neves F, Berger J, Berkman S. Neutrino interaction vertex reconstruction in DUNE with Pandora deep learning. European Physical Journal C. 2025 Jun 1;85(6).
Journal cover image

Published In

European Physical Journal C

DOI

EISSN

1434-6052

ISSN

1434-6044

Publication Date

June 1, 2025

Volume

85

Issue

6

Related Subject Headings

  • Nuclear & Particles Physics
  • 5107 Particle and high energy physics
  • 5102 Atomic, molecular and optical physics
  • 5101 Astronomical sciences
  • 0206 Quantum Physics
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics