Astronomy Potential of KM3NeT/ARCA

S. Aiello, A. Albert,M. Alshamsi,S. Alves Garre,Z. Aly,A. Ambrosone, F. Ameli, M. Andre,E. Androutsou, M. Anguita, L. Aphecetche, M. Ardid,S. Ardid, H. Atmani, J. Aublin, F. Badaracco,L. Bailly-Salins,Z. Bardačová, B. Baret,A. Bariego-Quintana, A. Baruzzi,S. Basegmez du Pree, Y. Becherini,M. Bendahman, F. Benfenati,M. Benhassi,D. M. Benoit,E. Berbee, V. Bertin, S. Biagi, M. Boettcher, D. Bonanno,J. Boumaaza,M. Bouta, M. Bouwhuis, C. Bozza,R. M. Bozza,H. Brânzaş,F. Bretaudeau,M. Breuhaus, R. Bruijn, J. Brunner, R. Bruno,E. Buis,R. Buompane, J. Busto,B. Caiffi, D. Calvo,S. Campion, A. Capone,F. Carenini,V. Carretero,T. Cartraud, P. Castaldi,V. Cecchini, S. Celli,L. Cerisy, M. Chabab,M. Chadolias, A. Chen, S. Cherubini, T. Chiarusi, M. Circella,R. Cocimano, J. A. B. Coelho, A. Coleiro, R. Coniglione, P. Coyle, A. Creusot, G. Cuttone, R. Dallier,Y. Darras,A. De Benedittis,B. De Martino,V. Decoene, R. Del Burgo,I. Del Rosso,L. S. Di Mauro, I. Di Palma, A. F. Díaz, C. Diaz,D. Diego-Tortosa, C. Distefano, A. Domi, C. Donzaud, D. Dornic, M. Dörr,E. Drakopoulou, D. Drouhin, J.-G. Ducoin,R. Dvornický, T. Eberl,E. Eckerová,A. Eddymaoui,T. van Eeden,M. Eff, D. van Eijk,I. El Bojaddaini,S. El Hedri,A. Enzenhöfer, G. Ferrara, M. D. Filipović, F. Filippini,D. Franciotti,L. A. Fusco, J. Gabriel,S. Gagliardini, T. Gal,J. García Méndez,A. Garcia Soto,C. Gatius Oliver,N. Geißelbrecht,H. Ghaddari, L. Gialanella, B. K. Gibson,E. Giorgio, I. Goos, P. Goswami,D. Goupilliere, S. R. Gozzini, R. Gracia, K. Graf, C. Guidi, B. Guillon, M. Gutiérrez, H. van Haren, A. Heijboer,A. Hekalo, L. Hennig, J. J. Hernández-Rey,W. Idrissi Ibnsalih, G. Illuminati, M. de Jong, P. de Jong,B. J. Jung,P. Kalaczyński, O. Kalekin, U. F. Katz,G. Kistauri, C. Kopper, A. Kouchner,V. Kueviakoe, V. Kulikovskiy,R. Kvatadze,M. Labalme, R. Lahmann, G. Larosa,C. Lastoria, A. Lazo,S. Le Stum, G. Lehaut, E. Leonora,N. Lessing, G. Levi,M. Lindsey Clark, F. Longhitano, F. Magnani, J. Majumdar, L. Malerba, F. Mamedov,J. Mańczak, A. Manfreda, M. Marconi, A. Margiotta, A. Marinelli, C. Markou, L. Martin, J. A. Martínez-Mora,F. Marzaioli,M. Mastrodicasa, S. Mastroianni,S. Miccichè, G. Miele, P. Migliozzi, E. Migneco,M. L. Mitsou,C. M. Mollo,L. Morales-Gallegos,M. Morga, A. Moussa,I. Mozun Mateo, R. Muller,M. R. Musone, M. Musumeci, S. Navas, A. Nayerhoda,C. A. Nicolau,B. Nkosi,B. Ó Fearraigh,V. Oliviero, A. Orlando,E. Oukacha,D. Paesani,J. Palacios González,G. Papalashvili, V. Parisi,E. J. Pastor Gomez,A. M. Păun, G. E. Păvălaş, I. Pelegris,S. Peña Martínez, M. Perrin-Terrin,J. Perronnel,V. Pestel,R. Pestes, P. Piattelli,C. Poirè, V. Popa, T. Pradier, J. Prado, S. Pulvirenti,C. A. Quiroz-Rangel,U. Rahaman, N. Randazzo,R. Randriatoamanana, S. Razzaque, I. C. Rea, D. Real, G. Riccobene, J. Robinson, A. Romanov,A. Šaina, F. Salesa Greus, D. F. E. Samtleben,A. Sánchez Losa, S. Sanfilippo, M. Sanguineti,C. Santonastaso, D. Santonocito, P. Sapienza, J. Schnabel, J. Schumann,H. M. Schutte,J. Seneca,N. Sennan,B. Setter, I. Sgura, R. Shanidze, A. Sharma, Y. Shitov, F. Šimkovic, A. Simonelli,A. Sinopoulou, M. V. Smirnov,B. Spisso, M. Spurio,D. Stavropoulos, I. Štekl, M. Taiuti, Y. Tayalati,H. Thiersen, I. Tosta e Melo,E. Tragia, B. Trocmé,V. Tsourapis, A. Tudorache, E. Tzamariudaki, A. Vacheret,A. Valer Melchor,V. Valsecchi, V. Van Elewyck,G. Vannoye, G. Vasileiadis,F. Vazquez de Sola,C. Verilhac,A. Veutro, S. Viola, D. Vivolo, J. Wilms, E. de Wolf,H. Yepes-Ramirez,G. Zarpapis, S. Zavatarelli,A. Zegarelli, D. Zito, J. D. Zornoza, J. Zúñiga, N. Zywucka

The European Physical Journal C(2024)

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摘要
AbstractThe KM3NeT/ARCA neutrino detector is currently under construction at 3500 m depth offshore Capo Passero, Sicily, in the Mediterranean Sea. The main science objectives are the detection of high-energy cosmic neutrinos and the discovery of their sources. Simulations were conducted for the full KM3NeT/ARCA detector, instrumenting a volume of 1 km$$^3$$ 3 , to estimate the sensitivity and discovery potential to point-like neutrino sources. This paper covers the reconstruction of track- and shower-like signatures, as well as the criteria employed for neutrino event selection. With an angular resolution below 0.1$$^\circ $$ ∘ for tracks and under 2$$^\circ $$ ∘ for showers, the sensitivity to point-like neutrino sources surpasses existing observed limits across the entire sky.
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