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    The search for high-energy neutrinos coincident with fast radio bursts with the ANTARES neutrino telescope

    74725.pdf (1.871Mb)
    Access Status
    Open access
    Authors
    Albert, A.
    Andre, M.
    Anghinolfi, M.
    Anton, G.
    Ardid, M.
    Aubert, J.
    Aublin, J.
    Avgitas, T.
    Baret, B.
    Barrios-Marti, J.
    Basa, S.
    Belhorma, B.
    Bertin, V.
    Biagi, S.
    Bormuth, R.
    Boumaaza, J.
    Bourret, S.
    Bouwhuis, M.
    Branzas, H.
    Bruijn, R.
    Brunner, J.
    Busto, J.
    Capone, A.
    Caramete, L.
    Carr, J.
    Celli, S.
    Chabab, M.
    Cherkaoui El Moursli, R.
    Chiarusi, T.
    Circella, M.
    Coelho, J.
    Coleiro, A.
    Colomer, M.
    Coniglione, R.
    Costantini, H.
    Coyle, P.
    Creusot, A.
    Diaz, A.
    Deschamps, A.
    Distefano, C.
    Di Palma, I.
    Domi, A.
    Donzaud, C.
    Dornic, D.
    Drouhin, D.
    Eberl, T.
    El Bojaddaini, I.
    El Khayati, N.
    Elsaesser, D.
    Enzenhoefer, A.
    Ettahiri, A.
    Fassi, F.
    Felis, I.
    Fermani, P.
    Ferrara, G.
    Fusco, L.
    Gay, P.
    Glotin, H.
    Gregoire, T.
    Gracia-Ruiz, R.
    Graf, K.
    Hallmann, S.
    van Haren, H.
    Heijboer, A.
    Hello, Y.
    Hernandez-Rey, J.
    Hoessl, J.
    Hofestaedt, J.
    Illuminati, G.
    James, Clancy
    de Jong, M.
    Jongen, M.
    Kadler, M.
    Kalekin, O.
    Katz, U.
    Kouchner, A.
    Kreter, M.
    Kreykenbohm, I.
    Kulikovskiy, V.
    Lachaud, C.
    Lahmann, R.
    Lefevre, D.
    Leonora, E.
    Levi, G.
    Lotze, M.
    Loucatos, S.
    Marcelin, M.
    Margiotta, A.
    Marinelli, A.
    Martinez-Mora, J.
    Mele, R.
    Melis, K.
    Migliozzi, P.
    Moussa, A.
    Navas, S.
    Nezri, E.
    Nunez, A.
    Organokov, M.
    Pavalas, G.
    Pellegrino, C.
    Piattelli, P.
    Popa, V.
    Pradier, T.
    Quinn, L.
    Racca, C.
    Randazzo, N.
    Riccobene, G.
    Sanchez-Losa, A.
    Saldana, M.
    Salvadori, I.
    Samtleben, D.
    Sanguineti, M.
    Sapienza, P.
    Schussler, F.
    Spurio, M.
    Stolarczyk, T.
    Taiuti, M.
    Tayalati, Y.
    Trovato, A.
    Turpin, D.
    Vallage, B.
    Van Elewyck, V.
    Versari, F.
    Vivolo, D.
    Wilms, J.
    Zaborov, D.
    Zornoza, J.
    Zuniga, J.
    Date
    2019
    Type
    Journal Article
    
    Metadata
    Show full item record
    Citation
    Albert, A. and Andre, M. and Anghinolfi, M. and Anton, G. and Ardid, M. and Aubert, J. and Aublin, J. et al. 2019. The search for high-energy neutrinos coincident with fast radio bursts with the ANTARES neutrino telescope. Monthly Notices of the Royal Astronomical Society. 482 (1): pp. 184-193.
    Source Title
    Monthly Notices of the Royal Astronomical Society
    DOI
    10.1093/mnras/sty2621
    ISSN
    0035-8711
    School
    Curtin Institute of Radio Astronomy (Physics)
    Remarks

    This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ©: 2018 The Authors. Published by Oxford University Press on behalf of the Royal Astronomical Society. All rights reserved.

    URI
    http://hdl.handle.net/20.500.11937/74440
    Collection
    • Curtin Research Publications
    Abstract

    In the past decade, a new class of bright transient radio sources with millisecond duration has been discovered. The origin of these so-called fast radio bursts (FRBs) is still a mystery, despite the growing observational efforts made by various multiwavelength and multimessenger facilities. To date, many models have been proposed to explain FRBs, but neither the progenitors nor the radiative and the particle acceleration processes at work have been clearly identified. In this paper, we assess whether hadronic processes may occur in the vicinity of the FRB source. If they do, FRBs may contribute to the high-energy cosmic-ray and neutrino fluxes. A search for these hadronic signatures was carried out using the ANTARES neutrino telescope. The analysis consists in looking for high-energy neutrinos, in the TeV–PeV regime, that are spatially and temporally coincident with the detected FRBs. Most of the FRBs discovered in the period 2013–2017 were in the field of view of the ANTARES detector, which is sensitive mostly to events originating from the Southern hemisphere. From this period, 12 FRBs were selected and no coincident neutrino candidate was observed. Upper limits on the per-burst neutrino fluence were derived using a power-law spectrum, dN/dEν∝E−γν⁠, for the incoming neutrino flux, assuming spectral indexes γ = 1.0, 2.0, 2.5. Finally, the neutrino energy was constrained by computing the total energy radiated in neutrinos, assuming different distances for the FRBs. Constraints on the neutrino fluence and on the energy released were derived from the associated null results.

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