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Direction reconstruction for the in-ice radio array of IceCube-Gen2

  • The IceCube-Gen2 Collaboration
  • Deutsches Elektronen-Synchrotron (DESY)
  • Loyola University Chicago
  • University of Canterbury
  • University of Wisconsin-Madison
  • Institute of Physics Bhubaneswar
  • Université Libre de Bruxelles
  • Niels Bohr Institutet
  • pro3dure medical GmbH
  • University of Delaware
  • Marquette University
  • Friedrich-Alexander Universitat Erlangen-Nurnberg (FAU)
  • The Broad Institute of MIT and Harvard
  • University of Utah
  • RWTH Aachen University
  • South Dakota School of Mines and Technology
  • University of California, Irvine
  • University of California at Berkeley
  • Max-Planck-lnstitut für Kohlenforschung
  • Chalmers University of Technology
  • Uppsala University
  • Technical University of Munich
  • University of Rochester
  • University of Maryland
  • University of Padova
  • University of Kansas
  • Humanoid Technologies Lab (H2T)
  • Johannes Gutenberg University
  • Georgia Institute of Technology
  • University of Adelaide
  • University of Münster
  • Drexel University
  • SUNY
  • Sungkyunkwan University
  • King's College London
  • Massachusetts Institute of Technology
  • The Pennsylvania State University
  • Eberly College of Science
  • Tata Institute of Fundamental Research, Mumbai
  • University of Chicago
  • VUB Neurology
  • University of Alabama
  • Oskar Klein Centre
  • Centre Hospitalier Universitaire (CHU) Mont-Godinne
  • Michigan State University
  • Bergische Universität Wuppertal
  • University of Manchester
  • Queen Mary University of London
  • Chiba-U
  • Southern University and A&M College
  • Academia Sinica Taipei
  • Humboldt-Universität zu Berlin
  • Osaka Prefecture University
  • Lawrence Berkeley National Laboratory
  • University of Nebraska Lincoln
  • Queen's University
  • University of Alberta
  • University of Tokyo
  • Clark-Atlanta University
  • University of Texas at Arlington
  • University of Nevada, Las Vegas
  • University of Notre Dame
  • University of Geneva
  • Columbia University
  • Yale University
  • Mercer University at Macon
  • Ohio State University
  • Ghent University
  • University of Alaska Anchorage
  • University of Oxford
  • University of Wisconsin-River Falls

Research output: Contribution to journalConference articlepeer-review

Abstract

The IceCube-Gen2 facility will extend the energy range of IceCube to ultra-high energies. The key component to detect neutrinos with energies above 10 PeV is a large array of in-ice radio detectors. In previous work, direction reconstruction algorithms using the forward-folding technique have been developed for both shallow (≲ 20 m) and deep in-ice detectors, and have also been successfully used to reconstruct cosmic rays with ARIANNA. Here, we focus on the reconstruction algorithm for the deep in-ice detector, which was recently introduced in the context of the Radio Neutrino Observatory in Greenland (RNO-G). We discuss the performance-critical aspects of the algorithm, as well as recent and future improvements, and apply it to study the performance of a station of the IceCube-Gen2 in-ice radio array. We obtain the angular resolution, which turns out to be strongly asymmetric, and use this to optimize the configuration of a single station.

Original languageEnglish
Article number1045
JournalProceedings of Science
Volume444
StatePublished - 27 Sep 2024
Event38th International Cosmic Ray Conference, ICRC 2023 - Nagoya, Japan
Duration: 26 Jul 20233 Aug 2023

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