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article · Physical review. D/Physical review. D.

Physics prospects with MeV neutrino-argon charged current interactions using enhanced photon detection in future LArTPCs

Abstract

We investigate MeV-scale electron neutrino charged current interactions in a liquid argon time projection chamber equipped with an enhanced photon detection system. Using simulations of deposited energy in charge and light calorimetry, we explore the potential for dual calorimetric neutrino energy reconstruction. We found energy reconstruction based on light-only calorimetry has a better resolution than combined charge and light calorimetry when hadrons are produced in these events. Meanwhile, enhanced light detection offers improved nanosecond timing resolution and broad optical coverage, enabling neutron tagging and identification of delayed low-energy gamma emissions. These advancements open new avenues in low-energy neutrino physics in next-generation LArTPCs.

Research topics

  • Atomic and Subatomic Physics Research
  • Radiation Detection and Scintillator Technologies
  • Nuclear Physics and Applications

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DOI: 10.1103/f3t7-5vmd

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