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Author (up) ANTARES Collaboration (Albert, A. et al); Alves, S.; Calvo, D.; Carretero, V.; Gozzini, R.; Hernandez-Rey, J.J.; Lazo, A.; Manczak, J.; Real, D.; Sanchez-Losa, A.; Saina, A.; Salesa Greus, F.; Zornoza, J.D.; Zuñiga, J. url  doi
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  Title Search for steady and flaring neutrino emission from cosmic sources using the complete ANTARES dataset Type Journal Article
  Year 2026 Publication European Physical Journal C Abbreviated Journal Eur. Phys. J. C  
  Volume 86 Issue 8 Pages 918 - 18pp  
  Keywords  
  Abstract ANTARES, a neutrino detector located in the depths of the Mediterranean Sea, operated successfully for over 15 years before being decommissioned in 2022. The telescope offered a vantage view of the Southern Sky and benefited from favourable water properties, enabling good angular resolution. This study makes use of data collected over the entire operational period of ANTARES to search for sources of high-energy cosmic neutrinos, considering both steady and flaring emission scenarios. First, a time-integrated search for high-energy neutrino clustering across much of the celestial sphere is conducted. The most significant accumulation is found at coordinates (alpha,delta)=(200.5 degrees,17.7 degrees) with a post-trial p value equal to 0.38. A dedicated search in the Galactic Plane is also performed for extended sources, yielding no significant excess. Additionally, a list of potential neutrino sources is investigated. The blazar MG3 J225517+2409 is identified as the most significant object, yet the excess remains compatible with background fluctuations. A mild local excess of 2.4 sigma is found for the blazar TXS 0506+056. The full sky is also examined for the presence of flaring neutrino emission. The most significant excess in this case corresponds to a similar to 4-day flare from the direction (alpha,delta)=(141.3 degrees,9.8 degrees) , with a post-trial p-value of 0.30. Finally, the directions of sources highlighted in IceCube's time-dependent searches are investigated. Temporal overlaps between ANTARES and IceCube flares are identified for PKS 1502+106 and TXS 0506+056, with an estimated chance probability of about 0.02%. However, the absence of a corresponding strong signal in IceCube does not support an astrophysical interpretation of the temporal coincidence.  
  Address [Albert, A.; Drouhin, D.; Pradier, T.] Univ Strasbourg, CNRS, IPHC, UMR 7178, F-67000 Strasbourg, France, Email: sergio.alves@ific.uv.es;  
  Corporate Author Thesis  
  Publisher Springer Place of Publication Editor  
  Language English Summary Language Original Title  
  Series Editor Series Title Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN 1434-6044 ISBN Medium  
  Area Expedition Conference  
  Notes WOS:001837391600001 Approved no  
  Is ISI yes International Collaboration yes  
  Call Number IFIC @ pastor @ Serial 7359  
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ific federMinisterio de Ciencia e InnovaciónAgencia Estatal de Investigaciongva