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Measurements of the time-dependent cosmic-ray Sun shadow with seven years of IceCube data: Comparison with the Solar cycle and magnetic field models

  • Icecube Collaboration
  • University of Canterbury
  • Loyola University Chicago
  • Deutsches Elektronen-Synchrotron (DESY)
  • Université Libre de Bruxelles
  • Niels Bohr Institutet
  • Oskar Klein Centre
  • University of Geneva
  • University of Delaware
  • Marquette University
  • Eberly College of Science
  • Friedrich-Alexander Universitat Erlangen-Nurnberg (FAU)
  • Massachusetts Institute of Technology
  • RWTH Aachen University
  • South Dakota School of Mines and Technology
  • Humanoid Technologies Lab (H2T)
  • University of California, Irvine
  • University of Wisconsin
  • Johannes Gutenberg University
  • University of California at Berkeley
  • Ohio State University
  • Bergische Universität Wuppertal
  • Max-Planck-lnstitut für Kohlenforschung
  • University of Rochester
  • University of Maryland, College Park
  • University of Padova
  • University of Kansas
  • National Research Nuclear University MEPhI
  • Lawrence Berkeley National Laboratory
  • Uppsala University
  • University of Münster
  • Georgia Institute of Technology
  • Sungkyunkwan University
  • Michigan State University
  • SNOLAB
  • VUB Neurology
  • The Pennsylvania State University
  • Ghent University
  • Humboldt-Universität zu Berlin
  • Southern University and A&M College
  • University of Wisconsin-Madison
  • University of Alabama
  • Technical University of Munich
  • University of Alberta
  • Chiba-U
  • University of Adelaide
  • pro3dure medical GmbH
  • University of Tokyo
  • Clark-Atlanta University
  • University of Texas at Arlington
  • SUNY
  • Drexel University
  • University of California at Los Angeles
  • University of Wisconsin-River Falls
  • Yale University
  • Mercer University at Macon
  • University of Alaska Anchorage
  • University of Oxford

Research output: Contribution to journalArticlepeer-review

20 Scopus citations

Abstract

Observations of the time-dependent cosmic-ray Sun shadow have been proven as a valuable diagnostic for the assessment of solar magnetic field models. In this paper, seven years of IceCube data are compared to solar activity and solar magnetic field models. A quantitative comparison of solar magnetic field models with IceCube data on the event rate level is performed for the first time. Additionally, a first energy-dependent analysis is presented and compared to recent predictions. We use seven years of IceCube data for the moon and the Sun and compare them to simulations on data rate level. The simulations are performed for the geometrical shadow hypothesis for the moon and the Sun and for a cosmic-ray propagation model governed by the solar magnetic field for the case of the Sun. We find that a linearly decreasing relationship between Sun shadow strength and solar activity is preferred over a constant relationship at the 6.4σ level. We test two commonly used models of the coronal magnetic field, both combined with a Parker spiral, by modeling cosmic-ray propagation in the solar magnetic field. Both models predict a weakening of the shadow in times of high solar activity as it is also visible in the data. We find tensions with the data on the order of 3σ for both models, assuming only statistical uncertainties. The magnetic field model CSSS fits the data slightly better than the PFSS model. This is generally consistent with what is found previously by the Tibet AS-γ Experiment; a deviation of the data from the two models is, however, not significant at this point. Regarding the energy dependence of the Sun shadow, we find indications that the shadowing effect increases with energy during times of high solar activity, in agreement with theoretical predictions.

Original languageEnglish
Article number042005
JournalPhysical Review D
Volume103
Issue number4
DOIs
StatePublished - 8 Feb 2021

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