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Lantwin, Oliver
The DUNE experiment is a future long-baseline neutrino oscillation experiment aiming at measuring the neutrino CP-violating phase and establishing the neutrino mass hierarchy, as well as at a rich physics programme from supernovae over low-energy physics to beyond Standard Model searches. The baseline technology for the first far detector is a prov...
Abed Abud, A. Abi, B. Acciarri, R. Acero, M.A. Adames, M.R. Adamov, G. Adamowski, M. Adams, D. Adinolfi, M. Adriano, C.
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Measurements of electrons from νe interactions are crucial for the Deep Underground Neutrino Experiment (DUNE) neutrino oscillation program, as well as searches for physics beyond the standard model, supernova neutrino detection, and solar neutrino measurements. This article describes the selection and reconstruction of low-energy (Michel) electron...
Abed Abud, Adam Abi, Babak Acciarri, Roberto Acero, Mario Adames, Marcio Adamov, George Adamowski, Mark Adams, David Adinolfi, Marco Adriano, Cris
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This document describes Offline Software and Computing for the Deep Underground Neutrino Experiment (DUNE) experiment, in particular, the conceptual design of the offline computing needed to accomplish its physics goals. Our emphasis in this document is the development of the computing infrastructure needed to acquire, catalog, reconstruct, simulat...
Ivanez-Ballesteros, Pilar Volpe, M. Cristina
We revisit the possibility that neutrinos undergo non-radiative decay. We investigate the potential to extract information on the neutrino lifetime-to-mass ratio from the diffuse supernova neutrino background. To this aim we explicitly consider the current uncertainties on the core-collapse supernova rate and on the fraction of failed supernovae. W...
Souza, H.V.
The Deep Underground Neutrino Experiment (DUNE) is a next generation long baseline (1300 km) neutrino oscillation experiment. The neutrino beam measurements will be performed by a near detector (ND) and far detector (FD). The far detector will consist of four modules, installed 1,5 km deep underground, based on Liquid Argon Time Projection Chamber ...
Abed Abud, A. Abi, B. Acciarri, R. Acero, M.A. Adames, M.R. Adamov, G. Adamowski, M. Adams, D. Adinolfi, M. Adriano, C.
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The Deep Underground Neutrino Experiment (DUNE) is a next-generation long-baseline neutrino oscillation experiment with a primary physics goal of observing neutrino and antineutrino oscillation patterns to precisely measure the parameters governing long-baseline neutrino oscillation in a single experiment, and to test the three-flavor paradigm. DUN...
Abud, A. Abed Abi, B. Acciarri, R. Acero, M.A. Adames, M.R. Adamov, G. Adamowski, M. Adams, D. Adinolfi, M. Adriano, C.
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This document presents the concept and physics case for a magnetized gaseous argon-based detector system (ND-GAr) for the Deep Underground Neutrino Experiment (DUNE) Near Detector. This detector system is required in order for DUNE to reach its full physics potential in the measurement of CP violation and in delivering precision measurements of osc...