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Neutrino Target-of-Opportunity Observations with Space-based and Suborbital Optical Cherenkov Detectors

  • the POEMMA and JEM-EUSO Collaborations
  • NASA Goddard Space Flight Center
  • University of Iowa
  • Biochemical and Environmental Engineering
  • Center for Research and Exploration in Space Science & Technology
  • NASA Marshall Space Flight Center
  • University of Chicago
  • University of Alabama in Huntsville
  • Gran Sasso Science Institute
  • Lehman College
  • INAF Istituto di Astrofisica Spaziale e Fisica Cosmica di Palermo
  • INFN Sezione di Catania
  • College of Computing
  • University of Turin
  • INFN Sezione di Torino
  • University of Utah
  • Niels Bohr Institutet
  • INFN Sezione di Bari
  • Università degli Studi di Catania
  • Riken
  • Sezione di Roma
  • Joint Laboratory of Optics
  • Institute of Meteorology and Climate Research
  • Stanford University
  • Colorado School of Mines
  • University of Maryland
  • University of California, Space Sciences Laboratory
  • Moscow State University
  • Institute of Experimental Physics Slovak Academy of Sciences
  • Institute of Physics of the Czech Academy of Sciences
  • Instituto de Ciencias Nucleares de la UNAM
  • Universidad Nacional Autónoma de México
  • University of Geneva
  • Astroparticule and Cosmol APC
  • Norwegian University of Science and Technology
  • INFN Sezione di Napoli
  • University of Rome “Tor Vergata”
  • University of Warsaw
  • Astrophysics Division
  • LNF-INFN
  • University of Naples Federico II
  • Fairfield University
  • Tlemcen University
  • Nihon University
  • Universidad Politécnica de Madrid
  • University of Tokyo
  • Université Badji Mokhtar - Annaba
  • Centre de Développement des Technologies Avancées
  • Universidad de Alcalá
  • University of Tübingen
  • Instituto Nacional de Técnica Aeroespacial (CSIC/INTA)
  • Università degli studi di Bari Aldo Moro
  • Centre Suisse d'Electronique et de Microtechnique SA
  • University of Sofia
  • KTH Royal Institute of Technology
  • Universidad Autónoma de Chiapas
  • Technical University of Munich
  • Institute of Space Sciences
  • Istituto di Astrofisica e Planetologia Spaziali (IAPS)
  • Kindai University
  • UTIU
  • IRAP/CNRS
  • University of León
  • Algiers Observatory
  • Kyoto University
  • Technical University of Kosice
  • Saitama University
  • Nagoya University
  • Sungkyunkwan University
  • Instituto de Astrofisica de Canarias
  • Konan University
  • National Astronomical Observatory
  • University of M’sila
  • Korea Astronomy and Space Science Institute
  • Friedrich-Alexander University (FAU) Erlangen-Nürnberg and Universitätsklinikum Erlangen
  • High Energy Accelerator Research Organization (KEK)
  • CDTA
  • Benemerita Universidad Autonoma de Puebla
  • Chiba University
  • Univ. Mentouri de Constantine
  • Osaka City University
  • ETH Zurich
  • Space Regatta Consortium
  • Hokkaido University
  • ISAS/JAXA
  • Osaka Electro-Communication University
  • Centro Mesoamericano de Física Teórica (MCTP)
  • Joint Institute for Nuclear Research, Dubna
  • Shinshu University
  • National Institutes for Quantum and Radiological Science and Technology
  • Universidad Michoacana de San Nicolás de Hidalgo
  • Kanazawa University

Résultats de recherche: Contribution à un journalArticle de conférenceRevue par des pairs

Résumé

Cosmic-ray accelerators capable of reaching ultra-high energies are expected to also produce very-high energy neutrinos via hadronic interactions within the source or its surrounding environment. Many of the candidate astrophysical source classes are either transient in nature or exhibit flaring activity. Using the Earth as a neutrino converter, suborbital and space-based optical Cherenkov detectors, such as POEMMA and EUSO-SPB2, will be able to detect upward-moving extensive air showers induced by decaying tau-leptons generated from cosmic tau neutrinos with energies ∼ 10 PeV and above. Both EUSO-SPB2 and POEMMA will be able to quickly repoint, enabling rapid response to astrophysical transient events. We calculate the transient sensitivity and sky coverage for both EUSO-SPB2 and POEMMA, accounting for constraints imposed by the Sun and the Moon on the observation time. We also calculate both detectors' neutrino horizons for a variety of modeled astrophysical neutrino fluences. We find that both EUSO-SPB2 and POEMMA will achieve transient sensitivities at the level of modeled neutrino fluences for nearby sources. We conclude with a discussion of the prospects of each mission detecting at least one transient event for various modeled astrophysical neutrino sources.

langue originaleAnglais
Numéro d'article977
journalProceedings of Science
Volume395
étatPublié - 18 mars 2022
Evénement37th International Cosmic Ray Conference, ICRC 2021 - Virtual, Berlin, Allemagne
Durée: 12 juil. 202123 juil. 2021

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