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Implementation and first results of the KM3NeT real-time core-collapse supernova neutrino search

Authors :
KM3NeT Collaboration
Aiello, S.
Albert, A.
Alshamsi, M.
Garre, S. Alves
Aly, Z.
Ambrosone, A.
Ameli, F.
Andre, M.
Androulakis, G.
Anghinolfi, M.
Anguita, M.
Ardid, M.
Ardid, S.
Aublin, J.
Bagatelas, C.
Baret, B.
Pree, S. Basegmez du
Bendahman, M.
Benfenati, F.
Berbee, E.
Berg, A. M. van den
Bertin, V.
Biagi, S.
Boettcher, M.
Cabo, M. Bou
Boumaaza, J.
Bouta, M.
Bouwhuis, M.
Bozza, C.
Brânzaş, H.
Bruijn, R.
Brunner, J.
Bruno, R.
Buis, E.
Buompane, R.
Busto, J.
Caiffi, B.
Calvo, D.
Campion, S.
Capone, A.
Carretero, V.
Castaldi, P.
Celli, S.
Chabab, M.
Chau, N.
Chen, A.
Cherubini, S.
Chiarella, V.
Chiarusi, T.
Circella, M.
Cocimano, R.
Coelho, J. A. B.
Coleiro, A.
Molla, M. Colomer
Coniglione, R.
Coyle, P.
Creusot, A.
Cruz, A.
Cuttone, G.
Dallier, R.
De Martino, B.
Di Palma, I.
Díaz, A. F.
Diego-Tortosa, D.
Distefano, C.
Domi, A.
Donzaud, C.
Dornic, D.
Dörr, M.
Drouhin, D.
Eberl, T.
Eddyamoui, A.
van Eeden, T.
van Eijk, D.
Bojaddaini, I. El
Hedri, S. El
Enzenhöfer, A.
Espinosa, V.
Fermani, P.
Ferrara, G.
Filipović, M. D.
Filippini, F.
Fusco, L. A.
Gal, T.
Méndez, J. García
Soto, A. Garcia
Garufi, F.
Gatelet, Y.
Oliver, C. Gatius
Geißelbrecht, N.
Gialanella, L.
Giorgio, E.
Gozzini, S. R.
Gracia, R.
Graf, K.
Grella, G.
Guderian, D.
Guidi, C.
Guillon, B.
Gutiérrez, M.
Haefner, J.
Hallmann, S.
Hamdaoui, H.
van Haren, H.
Heijboer, A.
Hekalo, A.
Hennig, L.
Hernández-Rey, J. J.
Hofestädt, J.
Huang, F.
Ibnsalih, W. Idrissi
Illuminati, G.
James, C. W.
Janezashvili, D.
de Jong, M.
de Jong, P.
Jung, B. J.
Kalaczyński, P.
Kalekin, O.
Katz, U. F.
Chowdhury, N. R. Khan
Kistauri, G.
van der Knaap, F.
Kooijman, P.
Kouchner, A.
Kulikovskiy, V.
Labalme, M.
Lahmann, R.
Lamoureux, M.
Larosa, G.
Lastoria, C.
Lazo, A.
Breton, R. Le
Stum, S. Le
Lehaut, G.
Leonardi, O.
Leone, F.
Leonora, E.
Lessing, N.
Levi, G.
Lincetto, M.
Clark, M. Lindsey
Lipreau, T.
Alvarez, C. LLorens
Longhitano, F.
Lopez-Coto, D.
Maderer, L.
Majumdar, J.
Mańczak, J.
Margiotta, A.
Marinelli, A.
Markou, C.
Martin, L.
Martínez-Mora, J. A.
Martini, A.
Marzaioli, F.
Mastroianni, S.
Melis, K. W.
Miele, G.
Migliozzi, P.
Migneco, E.
Mijakowski, P.
Miranda, L. S.
Mollo, C. M.
Moser, M.
Moussa, A.
Muller, R.
Musumeci, M.
Nauta, L.
Navas, S.
Nicolau, C. A.
Nkosi, B.
Fearraigh, B. Ó
O'Sullivan, M.
Organokov, M.
Orlando, A.
González, J. Palacios
Papalashvili, G.
Papaleo, R.
P{ă}un, A. M.
Păvălaş, G. E.
Pellegrino, C.
Perrin-Terrin, M.
Pestel, V.
Piattelli, P.
Pieterse, C.
Pisanti, O.
Poirè, C.
Popa, V.
Pradier, T.
Probst, I.
Pulvirenti, S.
Quéméner, G.
Randazzo, N.
Razzaque, S.
Real, D.
Reck, S.
Riccobene, G.
Romanov, A.
Rovelli, A.
Greus, F. Salesa
Samtleben, D. F. E.
Losa, A. Sánchez
Sanguineti, M.
Santonocito, D.
Sapienza, P.
Schnabel, J.
Schneider, M. F.
Schumann, J.
Schutte, H. M.
Seneca, J.
Sgura, I.
Shanidze, R.
Sharma, A.
Sinopoulou, A.
Spisso, B.
Spurio, M.
Stavropoulos, D.
Stellacci, S. M.
Taiuti, M.
Tayalati, Y.
Thiersen, H.
Tingay, S.
Tsagkli, S.
Tsourapis, V.
Tzamariudaki, E.
Tzanetatos, D.
Van Elewyck, V.
Vannoye, G.
Vasileiadis, G.
Versari, F.
Viola, S.
Vivolo, D.
de Wasseige, G.
Wilms, J.
Wojaczyński, R.
de Wolf, E.
Yousfi, T.
Zavatarelli, S.
Zegarelli, A.
Zito, D.
Zornoza, J. D.
Zúñiga, J.
Zywucka, N.
Source :
Eur. Phys. J. C 82, 317 (2022)
Publication Year :
2021

Abstract

The KM3NeT research infrastructure is under construction in the Mediterranean Sea. KM3NeT will study atmospheric and astrophysical neutrinos with two multi-purpose neutrino detectors, ARCA and ORCA, primarily aimed at GeV-PeV neutrinos. Thanks to the multi-photomultiplier tube design of the digital optical modules, KM3NeT is capable of detecting the neutrino burst from a Galactic or near-Galactic core-collapse supernova. This potential is already exploitable with the first detection units deployed in the sea. This paper describes the real-time implementation of the supernova neutrino search, operating on the two KM3NeT detectors since the first months of 2019. A quasi-online astronomy analysis is introduced to study the time profile of the detected neutrinos for especially significant events. The mechanism of generation and distribution of alerts, as well as the integration into the SNEWS and SNEWS 2.0 global alert systems are described. The approach for the follow-up of external alerts with a search for a neutrino excess in the archival data is defined. Finally, an overview of the current detector capabilities and a report after the first two years of operation are given.<br />Comment: 19 pages, 9 figures

Details

Database :
arXiv
Journal :
Eur. Phys. J. C 82, 317 (2022)
Publication Type :
Report
Accession number :
edsarx.2109.05890
Document Type :
Working Paper
Full Text :
https://doi.org/10.1140/epjc/s10052-022-10137-y