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Search for muon neutrinos from gamma-ray bursts with the IceCube neutrino telescope

  • R. Abbasi
  • , Y. Abdou
  • , T. Abu-Zayyad
  • , J. Adams
  • , J. A. Aguilar
  • , M. Ahlers
  • , K. Andeen
  • , J. Auffenberg
  • , X. Bai
  • , M. Baker
  • , S. W. Barwick
  • , R. Bay
  • , J. L. Bazo Alba
  • , K. Beattie
  • , J. J. Beatty
  • , S. Bechet
  • , J. K. Becker
  • , K. H. Becker
  • , M. L. Benabderrahmane
  • , J. Berdermann
  • P. Berghaus, D. Berley, E. Bernardini, D. Bertrand, D. Z. Besson, M. Bissok, E. Blaufuss, D. J. Boersma, C. Bohm, J. Bolmont, O. Botner, L. Bradley, J. Braun, D. Breder, T. Castermans, D. Chirkin, B. Christy, J. Clem, S. Cohen, D. F. Cowen, M. V. D'Agostino, M. Danninger, C. T. Day, C. De Clercq, L. Demirörs, O. Depaepe, F. Descamps, P. Desiati, G. De Vries-Uiterweerd, T. Deyoung, J. C. Diaz-Velez, J. Dreyer, J. P. Dumm, M. R. Duvoort, W. R. Edwards, R. Ehrlich, J. Eisch, R. W. Ellsworth, O. Engdegrd, S. Euler, P. A. Evenson, O. Fadiran, A. R. Fazely, T. Feusels, K. Filimonov, C. Finley, M. M. Foerster, B. D. Fox, A. Franckowiak, R. Franke, T. K. Gaisser, J. Gallagher, R. Ganugapati, L. Gerhardt, L. Gladstone, A. Goldschmidt, J. A. Goodman, R. Gozzini, D. Grant, T. Griesel, A. Gross, S. Grullon, R. M. Gunasingha, M. Gurtner, C. Ha, A. Hallgren, F. Halzen, K. Han, K. Hanson, Y. Hasegawa, J. Heise, K. Helbing, P. Herquet, S. Hickford, G. C. Hill, K. D. Hoffman, K. Hoshina, D. Hubert, W. Huelsnitz, J. P. Hül, P. O. Hulth, K. Hultqvist, S. Hussain, R. L. Imlay, M. Inaba, A. Ishihara, J. Jacobsen, G. S. Japaridze, H. Johansson, J. M. Joseph, K. H. Kampert, A. Kappes, T. Karg, A. Karle, J. L. Kelley, P. Kenny, J. Kiryluk, F. Kislat, S. R. Klein, S. Knops, G. Kohnen, H. Kolanoski, L. Köpke, M. Kowalski, T. Kowarik, M. Krasberg, K. Kuehn, T. Kuwabara, M. Labare, S. Lafebre, K. Laihem, H. Landsman, R. Lauer, D. Lennarz, A. Lucke, J. Lundberg, J. Lünemann, J. Madsen, P. Majumdar, R. Maruyama, K. Mase, H. S. Matis, C. P. McParland, K. Meagher, M. Merck, P. Mészros, E. Middell, N. Milke, H. Miyamoto, A. Mohr, T. Montaruli, R. Morse, S. M. Movit, R. Nahnhauer, J. W. Nam, P. Nieen, D. R. Nygren, S. Odrowski, A. Olivas, M. Olivo, M. Ono, S. Panknin, S. Patton, C. Pérez De Los Heros, J. Petrovic, A. Piegsa, D. Pieloth, A. C. Pohl, R. Porrata, N. Potthoff, P. B. Price, M. Prikockis, G. T. Przybylski, K. Rawlins, P. Redl, E. Resconi, W. Rhode, M. Ribordy, A. Rizzo, J. P. Rodrigues, P. Roth, F. Rothmaier, C. Rott, C. Roucelle, D. Rutledge, D. Ryckbosch, H. G. Sander, S. Sarkar, S. Schlenstedt, T. Schmidt, D. Schneider, A. Schukraft, O. Schulz, M. Schunck, D. Seckel, B. Semburg, S. H. Seo, Y. Sestayo, S. Seunarine, A. Silvestri, A. Slipak, G. M. Spiczak, C. Spiering, M. Stamatikos, T. Stanev, G. Stephens, T. Stezelberger, R. G. Stokstad, M. C. Stoufer, S. Stoyanov, E. A. Strahler, T. Straszheim, K. H. Sulanke, G. W. Sullivan, Q. Swillens, I. Taboada, A. Tamburro, O. Tarasova, A. Tepe, S. Ter-Antonyan, C. Terranova, S. Tilav, P. A. Toale, J. Tooker, D. Tosi, D. Turan, N. Van Eijndhoven, J. Vandenbroucke, A. Van Overloop, B. Voigt, C. Walck, T. Waldenmaier, M. Walter, C. Wendt, S. Westerhoff, N. Whitehorn, C. H. Wiebusch, A. Wiedemann, G. Wikström, D. R. Williams, R. Wischnewski, H. Wissing, K. Woschnagg, X. W. Xu, G. Yodh, And S. Yoshida
  • University of Wisconsin-Madison
  • Ghent University
  • Department of Physics
  • University of Wisconsin-River Falls
  • Department of Physics and Astronomy
  • University of Canterbury
  • University of Oxford
  • Department of Physics
  • University of Wuppertal
  • University of Delaware
  • Department of Physics and Astronomy
  • University of California at Irvine
  • Department of Physics
  • University of California at Berkeley
  • German Electron Synchrotron
  • Lawrence Berkeley National Laboratory
  • Department of Physics
  • Ohio State University
  • Department of Astronomy
  • Science Faculty CP230
  • Université libre de Bruxelles
  • Department of Physics
  • TU Dortmund University
  • University of Maryland
  • Department of Physics and Astronomy
  • University of Kansas
  • RWTH Aachen University
  • Department of Physics
  • Oskar Klein Centre
  • Department of Physics and Astronomy
  • Uppsala University
  • Pennsylvania State University
  • Universite de Mons
  • Laboratory for High Energy Physics
  • Swiss Federal Institute of Technology Lausanne
  • Department of Astronomy and Astrophysics
  • Dienst ELEM
  • Vrije Universiteit Brussel
  • Department of Physics and Astronomy
  • Utrecht University
  • Clark Atlanta University
  • Department of Physics
  • Southern University and A&M College
  • Institut für Physik
  • Humboldt University of Berlin
  • Department of Astronomy
  • Institut für Physik
  • Johannes Gutenberg University Mainz
  • Max Planck Institute for Nuclear Physics
  • Chiba University
  • Friedrich-Alexander University Erlangen-Nürnberg
  • University of Bari
  • School of Pure and Applied Natural Sciences
  • Linnaeus University
  • Department of Physics and Astronomy
  • University of Alaska Anchorage
  • School of Physics and Center for Relativistic Astrophysics
  • Georgia Institute of Technology
  • Department of Physics and Astronomy

Research output: Contribution to journalArticlepeer-review

98 Scopus citations

Abstract

We present the results of searches for high-energy muon neutrinos from 41 gamma-ray bursts (GRBs) in the northern sky with the IceCube detector in its 22 string configuration active in 2007/2008. The searches cover both the prompt and a possible precursor emission as well as a model-independent, wide time window of -1 hr to +3hr around each GRB. In contrast to previous searches with a large GRB population, we do not utilize a standard Waxman-Bahcall GRB flux for the prompt emission but calculate individual neutrino spectra for all 41 GRBs from the burst parameters measured by satellites. For all of the three time windows, the best estimate for the number of signal events is zero. Therefore, we place 90% CL upper limits on the fluence from the prompt phase of 3.7 × 10 -3 erg cm-2 (72TeV-6.5PeV) and on the fluence from the precursor phase of 2.3 × 10-3 erg cm-2 (2.2-55TeV), where the quoted energy ranges contain 90% of the expected signal events in the detector. The 90% CL upper limit for the wide time window is 2.7 × 10 -3 erg cm-2 (3TeV-2.8PeV) assuming an E -2 flux.

Original languageEnglish
Pages (from-to)346-359
Number of pages14
JournalAstrophysical Journal
Volume710
Issue number1
DOIs
StatePublished - 2010
Externally publishedYes

Keywords

  • Gamma-ray burst: general
  • Methods: data analysis
  • Neutrinos
  • Telescopes

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